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Paper Citation Record · LEDGER

Testing the nature of compact objects in the lower mass gap using gravitational wave observations

As of 18 August 2026, this Paper Citation Record lists 100 of 110 outbound references and 6 inbound Pith citation observations for arXiv:2509.10420.

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pith.paper-citation-record.v1
2509.10420 v1

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100 of 110 outbound references displayed

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Outbound references

Observation c3e3fdcb-fd6c-4304-9a8a-444ff81d3603 · outbound

This paper cites an unresolved cited work.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Unresolved cited work

Reference 1

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Observation a54c78f7-a62a-40ca-b99b-07e58400d942 · outbound

This paper cites These simulations are then analysed assuming a (a) boson star model and a (b) BBH model.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations These simulations are then analysed assuming a (a) boson star model and a (b) BBH model

Reference 2

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This paper cites −5 8−50δκ a−50κ s +100η (1+κ s) # − 5 4χaχs h δ+80 (1−2η)κ a +80δκ s i ,(4a) ψSIQM 3 PN =π.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations −5 8−50δκ a−50κ s +100η (1+κ s) # − 5 4χaχs h δ+80 (1−2η)κ a +80δκ s i ,(4a) ψSIQM 3 PN =π

Reference 3

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Unresolved cited work

Reference 4

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Unresolved cited work

Reference 5

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This paper cites Instead, the estimates ofδκi andΛ i can directly constrain the allowed parameter space of such alternative models.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Instead, the estimates ofδκi andΛ i can directly constrain the allowed parameter space of such alternative models

Reference 6

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Unresolved cited work

Reference 7

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Unresolved cited work

Reference 8

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Unresolved cited work

Reference 9

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This paper cites For the first case, the re- covery model is only characterized by the BBH parameters {θBBH}.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations For the first case, the re- covery model is only characterized by the BBH parameters {θBBH}

Reference 10

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Observation 089322fc-0c58-41d6-a991-aeee07e5bd22 · outbound

This paper cites an unresolved cited work.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Unresolved cited work

Reference 11

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Unresolved cited work

Reference 12

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Observation 3aac8543-38e1-499d-a996-138f5475cd22 · outbound

This paper cites 6, the effect of SNR in measuring the parameters of a non-BH signal is demonstrated, considering two cases, SNR=50 and SNR=100.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations 6, the effect of SNR in measuring the parameters of a non-BH signal is demonstrated, considering two cases, SNR=50 and SNR=100

Reference 13

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This paper cites GWTC-4.0: Updating the Gravitational-Wave Transient Catalog with Observations from the First Part of the Fourth LIGO-Virgo-KAGRA Observing Run.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations GWTC-4.0: Updating the Gravitational-Wave Transient Catalog with Observations from the First Part of the Fourth LIGO-Virgo-KAGRA Observing Run

Reference 14

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Unresolved cited work

Reference 17

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Observation 6210a7a4-4718-49de-a372-eb67622086bb · outbound

This paper cites 3-OGC: Catalog of gravitational waves from compact-binary mergers.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations 3-OGC: Catalog of gravitational waves from compact-binary mergers

Reference 18

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This paper cites New search pipeline for gravitational waves with higher-order modes using mode-by-mode filtering.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations New search pipeline for gravitational waves with higher-order modes using mode-by-mode filtering

Reference 19

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Advanced LIGO

Reference 20

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This paper cites Advanced Virgo: a 2nd generation interferometric gravitational wave detector.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Advanced Virgo: a 2nd generation interferometric gravitational wave detector

Reference 21

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Observation 31aa28bb-f667-4dcd-a307-515cbcd10926 · outbound

This paper cites Iyer et al., LIGO-India Technical Report No.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Iyer et al., LIGO-India Technical Report No

Reference 22

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This paper cites Cosmic Explorer: A Submission to the NSF MPSAC ngGW Subcommittee.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Cosmic Explorer: A Submission to the NSF MPSAC ngGW Subcommittee

Reference 23

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Science with the Einstein Telescope: a comparison of different designs

Reference 24

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Abbott, T

Reference 25

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Gupta, D

Reference 27

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Mahapatra, D

Reference 28

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This paper cites Neutron stars versus black holes: probing the mass gap with LIGO/Virgo.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Neutron stars versus black holes: probing the mass gap with LIGO/Virgo

Reference 29

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Cotturone, M

Reference 30

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Constraining black hole mimickers with gravitational wave observations

Reference 31

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Testing the binary black hole nature of a compact binary coalescence

Reference 32

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Recognizing black holes in gravitational-wave observations: Challenges in telling apart impostors in mass-gap binaries

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Is the gravitational-wave ringdown a probe of the event horizon?

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Testing strong-field gravity with tidal Love numbers

Reference 36

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This paper cites Supermassive black holes or boson stars? Hair counting with gravitational wave detectors.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Supermassive black holes or boson stars? Hair counting with gravitational wave detectors

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Ghosh and M

Reference 39

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Poisson, Phys

Reference 40

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Quadratic-in-spin effects in the orbital dynamics and gravitational-wave energy flux of compact binaries at the 3PN order

Reference 42

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Testing the nature of compact objects in the lower mass gap using gravitational wave observations Cubic order spin effects in the dynamics and gravitational wave energy flux of compact object binaries

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This paper cites Constraints on the binary black hole nature of GW151226 and GW170608 from the measurement of spin-induced quadrupole moments.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Constraints on the binary black hole nature of GW151226 and GW170608 from the measurement of spin-induced quadrupole moments

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source=pdf_text observed=2026-08-15T15:58:53.688577Z digest=sha256:b4877e723a5327f0a4295406279348cf98564700eedb2fa4c90ba04292da5d0d

Observation 799be9c8-3264-4fde-aad9-bcf9ee3bb42d · outbound

This paper cites GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run

Reference 46

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source=pdf_text observed=2026-08-15T15:58:53.692436Z digest=sha256:7eae5dd24b86470ee2c958f26c26a5d791ccdf3ae0e0487fb969163fdf2ee657

Observation e8fa8d13-56de-4b2c-a035-259526f980d4 · outbound

This paper cites GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run

Reference 47

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source=pdf_text observed=2026-08-15T15:58:53.695896Z digest=sha256:93b2fa288d4523719b30486bb4060840bbe5ee8fd7244db850d09dfa7270a919

Observation 455e930e-0199-4719-b0a1-526440185b29 · outbound

This paper cites Ryan, Phys.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Ryan, Phys

Reference 48

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source=pdf_text observed=2026-08-15T15:58:53.698867Z digest=sha256:8dafad16ed2783e1a3d74a2187314f28747f766f40f255afe2808112fb1e56e2

Observation 5f995a32-32e3-446a-8853-11371a6adf17 · outbound

This paper cites Gravitational-wave detectors as particle-physics laboratories: Constraining scalar interactions with a coherent inspiral model of boson-star binaries.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Gravitational-wave detectors as particle-physics laboratories: Constraining scalar interactions with a coherent inspiral model of boson-star binaries

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source=pdf_text observed=2026-08-15T15:58:53.702011Z digest=sha256:53b10a31b608d9e8131a86d160979be86ab56010c7e23806835317e15a7d0600

Observation 02c588a1-c4cc-47bc-8aa8-741c8f04aaca · outbound

This paper cites Revising the multipole moments of numerical spacetimes, and its consequences.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Revising the multipole moments of numerical spacetimes, and its consequences

Reference 50

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source=pdf_text observed=2026-08-15T15:58:53.705484Z digest=sha256:fffc1f31e23683db8e79927ba7cdd35ba6fb53e19839f7bcf516faa07edeeb5e

Observation dc436189-53dc-48f8-a0e0-f441d7e4b0ae · outbound

This paper cites Slowly rotating thin shell gravastars.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Slowly rotating thin shell gravastars

Reference 51

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source=pdf_text observed=2026-08-15T15:58:53.708713Z digest=sha256:ce40f32b759876509296a2f1e7c571389e334e02dbe6ec3f8ac011005d78d712

Observation bbf8dee3-f320-452b-b502-f3c549c63dc7 · outbound

This paper cites Tidal Love numbers of neutron stars.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Tidal Love numbers of neutron stars

Reference 52

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source=pdf_text observed=2026-08-15T15:58:53.711800Z digest=sha256:5d0fed1daa991ee7e9b1fbd736c321f0e2b512cb02366176d5951bdd0fa9ecd7

Observation f4242a52-4b4e-4da9-998a-9e78e086d329 · outbound

This paper cites Constraining neutron star tidal Love numbers with gravitational wave detectors.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Constraining neutron star tidal Love numbers with gravitational wave detectors

Reference 54

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source=pdf_text observed=2026-08-15T15:58:53.718277Z digest=sha256:d0fefb9924af6ba3884dd5bc37a6e8c40b47af4263005d25a54dcf1cdd0167cd

Observation a103928a-b9d1-42d7-a213-cfc6ddd1704c · outbound

This paper cites Distinguishing Boson Stars from Black Holes and Neutron Stars from Tidal Interactions in Inspiraling Binary Systems.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Distinguishing Boson Stars from Black Holes and Neutron Stars from Tidal Interactions in Inspiraling Binary Systems

Reference 55

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source=pdf_text observed=2026-08-15T15:58:53.721093Z digest=sha256:559c2dcc25d6fbdab80bc8628135f2bc589a8caed67ff43dc9c52e2d3ea3076f

Observation 4420d4f2-b776-4219-b312-ced8d58afc95 · outbound

This paper cites Post-1-Newtonian tidal effects in the gravitational waveform from binary inspirals.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Post-1-Newtonian tidal effects in the gravitational waveform from binary inspirals

Reference 56

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no resolver link, observed 2026-08-15T15:58:53.725245Z

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source=pdf_text observed=2026-08-15T15:58:53.725245Z digest=sha256:c0aa0a715a4eecd9340cf2fc3043a8a3e935d9ba961e1657f3b674aa81e1cc6c

Observation e57e6144-64c4-4130-bcc2-1aca35a76583 · outbound

This paper cites Measurability of the tidal polarizability of neutron stars in late-inspiral gravitational-wave signals.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Measurability of the tidal polarizability of neutron stars in late-inspiral gravitational-wave signals

Reference 57

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source=pdf_text observed=2026-08-15T15:58:53.728415Z digest=sha256:25778740be9cbff7b3514910770a08baa209968fe74311f62b01eb996e07fd2a

Observation 48dbbf68-1d00-44a4-81de-ead096adfc7e · outbound

This paper cites GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral

Reference 58

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source=pdf_text observed=2026-08-15T15:58:53.732317Z digest=sha256:c9c11172f629aa6b31cf59afeb0042d6d7ddfde065a7d2053938dee466b58c0a

Observation a9f0d3b1-6392-47ad-89b2-6d17d1e93a68 · outbound

This paper cites Impact and detectability of spin-tidal couplings in neutron star inspirals.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Impact and detectability of spin-tidal couplings in neutron star inspirals

Reference 59

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source=pdf_text observed=2026-08-15T15:58:53.736457Z digest=sha256:b1668345678a49e93930a132a23bd9f5a5fba4c957514242a8b38616e42845eb

Observation 5c7ef319-77e2-42f7-9410-18c70af29fcc · outbound

This paper cites Post-Newtonian spin-tidal couplings for compact binaries.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Post-Newtonian spin-tidal couplings for compact binaries

Reference 60

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source=pdf_text observed=2026-08-15T15:58:53.740163Z digest=sha256:abdfbe7fe68616c083140a652ecca27d946fe723bf66279d3a5607e2dc8103ad

Observation 14af97cc-794f-47d9-be53-c958a2655abf · outbound

This paper cites Energy and angular momentum flow into a black hole in a binary.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Energy and angular momentum flow into a black hole in a binary

Reference 61

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source=pdf_text observed=2026-08-15T15:58:53.743366Z digest=sha256:f9b243715631f260f633740309f056b39a710562a908b55be9239cd62b93fece

Observation 31bf6aac-7812-4fba-bb43-a1c857e0622c · outbound

This paper cites Gravitational-wave constraints on the GWTC-2 events by measuring the tidal deformability and the spin-induced quadrupole moment.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Gravitational-wave constraints on the GWTC-2 events by measuring the tidal deformability and the spin-induced quadrupole moment

Reference 62

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source=pdf_text observed=2026-08-15T15:58:53.746799Z digest=sha256:d2f128987e6fb87e9548eb6f1b5d207269a69698135729520f0a35b7a24c4eb2

Observation c2f0d09a-0cc0-40ca-ad05-b34de70ade23 · outbound

This paper cites Prospects for estimating parameters from gravitational waves of superspinar binaries.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Prospects for estimating parameters from gravitational waves of superspinar binaries

Reference 63

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source=pdf_text observed=2026-08-15T15:58:53.750643Z digest=sha256:bae002c7ff5db74698119bd4b07d4f6f62272713cf445e7f4610ae9a94c60300

Observation 22373fcf-a28b-4319-9c6c-b34a1175706e · outbound

This paper cites an unresolved cited work.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Unresolved cited work

Reference 64

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source=pdf_text observed=2026-08-15T15:58:53.754688Z digest=sha256:3139d10fdd600037a4f7b588b7fd2b35af3aab1e420c97c12719ab3f0e6d4f5e

Observation d1e6b8ec-e703-432a-868b-fec9ddf0a609 · outbound

This paper cites The multipolar structure of rotating boson stars.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations The multipolar structure of rotating boson stars

Reference 65

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source=pdf_text observed=2026-08-15T15:58:53.758514Z digest=sha256:aa25be0ee7a2d0aa2dda0f04b103ec431967cfa42a760a2b84d15df993dd2744

Observation a1becb5b-f9d9-458f-89c6-6d9c5a343f25 · outbound

This paper cites Bayesian parameter estimation on boson-star binary signals with a coherent inspiral template and spin-dependent quadrupolar corrections.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Bayesian parameter estimation on boson-star binary signals with a coherent inspiral template and spin-dependent quadrupolar corrections

Reference 66

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No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

source=pdf_text observed=2026-08-15T15:58:53.761456Z digest=sha256:17d1de0b7e7868dbbfedda901783a9bad0d21a6193b89c924bd089a34f358ad7

Observation ee88b8a6-979d-4afc-a8e4-cce5b41605c1 · outbound

This paper cites GWTC-2.1: Deep Extended Catalog of Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations GWTC-2.1: Deep Extended Catalog of Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run

Reference 67

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source=pdf_text observed=2026-08-15T15:58:53.765121Z digest=sha256:ecbfc7cce476ad50a819dd872f2783bbab9fbb0bad8e400c23854e53b06f3f63

Observation 1c84862d-bcfb-4a31-a257-49af9281b6ec · outbound

This paper cites GW190412: Observation of a Binary-Black-Hole Coalescence with Asymmetric Masses.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations GW190412: Observation of a Binary-Black-Hole Coalescence with Asymmetric Masses

Reference 68

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source=pdf_text observed=2026-08-15T15:58:53.768958Z digest=sha256:bc7a7a53a189a0ef1305ec43965a56fe7da3cc8ca31a637d74644da7c7728bd8

Observation 527d8826-cfd9-4748-90f0-0d20acd4cbb0 · outbound

This paper cites GW190425: Observation of a Compact Binary Coalescence with Total Mass $\sim 3.4 M_{\odot}$.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations GW190425: Observation of a Compact Binary Coalescence with Total Mass $\sim 3.4 M_{\odot}$

Reference 69

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source=pdf_text observed=2026-08-15T15:58:53.773044Z digest=sha256:52b0958fcfebab3d7739a35e55039ed1ae897c9597d52b2acad13de2f27dd1dd

Observation 828552f1-22e7-4258-b5d4-751ea2a5e8ee · outbound

This paper cites Abbott et al.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Abbott et al

Reference 70

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source=pdf_text observed=2026-08-15T15:58:53.777851Z digest=sha256:b138f4eb73e3cc77d667d51793a34f00b0ad53a498ecd742589fe13fbc10424e

Observation 228ccef2-b561-4f40-bc53-d52f91d40cfd · outbound

This paper cites General-relativistic precession in a black-hole binary.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations General-relativistic precession in a black-hole binary

Reference 71

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source=pdf_text observed=2026-08-15T15:58:53.781185Z digest=sha256:7153ac017384d56dc15394cd2ab528d813737e725803e9df3d94c96c0eb07bd5

Observation abcbc361-2fdc-48fa-8f26-ad9b775b9af5 · outbound

This paper cites Morras, G.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Morras, G

Reference 72

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source=pdf_text observed=2026-08-15T15:58:53.786070Z digest=sha256:e610e6bd5a8f0706ff51e0686b3fce8d7383411e8ed52fcfacf533433ea3c7e0

Observation 7fe24a06-1a08-4e43-8bb1-2a602febc6e4 · outbound

This paper cites Everything everywhere all at once: A detailed study of GW230529.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Everything everywhere all at once: A detailed study of GW230529

Reference 74

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source=pdf_text observed=2026-08-15T15:58:53.792652Z digest=sha256:f6d4bc4194bdd68ac00b3cebf2aed316c43edaa88a3b57401eb8e2093532ff95

Observation 5d066058-e022-48da-bf71-1149cc850da7 · outbound

This paper cites What is the nature of GW230529? An exploration of the gravitational lensing hypothesis.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations What is the nature of GW230529? An exploration of the gravitational lensing hypothesis

Reference 75

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source=pdf_text observed=2026-08-15T15:58:53.796195Z digest=sha256:f4f60fd40ce5ad6f0387d4018ca4a230fc8b467da0a296295e98250ce8554d02

Observation bcc345d6-f1f7-4971-b741-c66f7a4ecb91 · outbound

This paper cites Unveiling the central engine of core-collapse supernovae in the Local Universe: NS or BH?.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Unveiling the central engine of core-collapse supernovae in the Local Universe: NS or BH?

Reference 76

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local_arxiv, observed 2026-08-15T15:58:54.744750Z

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No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

source=pdf_text observed=2026-08-15T15:58:53.799988Z digest=sha256:c9a425083d08f4162a574c8518bcff540a2c6d740ed5942a2a82866f0265df7c

Observation a65dc326-5d8c-4ca2-b0e5-5ae1fbd399ec · outbound

This paper cites Lower-mass-gap Black Holes in Dense Star Clusters.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Lower-mass-gap Black Holes in Dense Star Clusters

Reference 77

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source=pdf_text observed=2026-08-15T15:58:53.803713Z digest=sha256:fc244bc59ebf48f8fabfc73229d6d163ecdf3d14db1cd2fd0bf15a5f01453a07

Observation aee2357e-2d75-4c3e-a76d-5e7633075180 · outbound

This paper cites Signatures of Low Mass Black Hole-Neutron Star Mergers.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Signatures of Low Mass Black Hole-Neutron Star Mergers

Reference 78

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source=pdf_text observed=2026-08-15T15:58:53.807026Z digest=sha256:c1444d38959d33830dc1024a58558024ea678556e68789e3248f65a4b8d79798

Observation 98a33b4b-78fc-4f42-8a5d-87cc7b6d50dc · outbound

This paper cites Chatziioannou, H.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Chatziioannou, H

Reference 79

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source=pdf_text observed=2026-08-15T15:58:53.811092Z digest=sha256:b2455c6074eb93b2cecdecb098be6479030375fc705e5c7f9b44401823de079f

Observation 35b6c856-6455-417d-a641-599a5ea77ae7 · outbound

This paper cites Inspiral-merger-ringdown waveforms in Einstein-scalar-Gauss-Bonnet gravity within the effective-one-body formalism.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Inspiral-merger-ringdown waveforms in Einstein-scalar-Gauss-Bonnet gravity within the effective-one-body formalism

Reference 80

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source=pdf_text observed=2026-08-15T15:58:53.814793Z digest=sha256:edafd69c30bfb4da74353d2e2e49cd3ffb97e5ce112487c8ae0918d6650a0c08

Observation 57e38f2c-2be4-4872-8189-79f77afa8a94 · outbound

This paper cites Constraints on Einstein-dilation-Gauss-Bonnet gravity and electric charge of compact binary systems from GW230529.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Constraints on Einstein-dilation-Gauss-Bonnet gravity and electric charge of compact binary systems from GW230529

Reference 81

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source=pdf_text observed=2026-08-15T15:58:53.820084Z digest=sha256:4ba0090f51493002ed2e67cb6623472382fec7f1488632d058032e8c079594a8

Observation 28fdd760-ad82-43db-92f1-4af9f89462ad · outbound

This paper cites Distinguishing Neutron Star vs. Low-Mass Black Hole Binaries with Late Inspiral & Postmerger Gravitational Waves $-$ Sensitivity to Transmuted Black Holes and Non-Annihilating Dark Matter.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Distinguishing Neutron Star vs. Low-Mass Black Hole Binaries with Late Inspiral & Postmerger Gravitational Waves $-$ Sensitivity to Transmuted Black Holes and Non-Annihilating Dark Matter

Reference 82

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source=pdf_text observed=2026-08-15T15:58:53.823511Z digest=sha256:9c4f3f0e90c7d6a9e72cb89eb691d6eeaea605170acb53e6de57ee040fe459d4

Observation 01273afa-c8b6-407c-a6a7-d6b2de909ccb · outbound

This paper cites Tests of General Relativity with GW230529: a neutron star merging with a lower mass-gap compact object.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Tests of General Relativity with GW230529: a neutron star merging with a lower mass-gap compact object

Reference 83

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source=pdf_text observed=2026-08-15T15:58:53.827443Z digest=sha256:ff611aaeaf6f48f09995d3e40eefbcfc078940b4c544e423092dfc0b6d705128

Observation 27a6c3be-5b72-4779-b0b7-e13cb1cd20f8 · outbound

This paper cites Jedamzik, Phys.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Jedamzik, Phys

Reference 84

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source=pdf_text observed=2026-08-15T15:58:53.831085Z digest=sha256:754a386c3bf88540f9f4f3610156e64ff2a238a5785c311c7c8220349f5e3720

Observation b0642fc1-9e2e-40a3-be6b-a1d6338b7bd9 · outbound

This paper cites On the nature of GW190814 and its impact on the understanding of supranuclear matter.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations On the nature of GW190814 and its impact on the understanding of supranuclear matter

Reference 85

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source=pdf_text observed=2026-08-15T15:58:53.834293Z digest=sha256:9aca15ca426c43e649a43be473b4c1fe2046ffac6d32cde0bd65cb09c52ff00c

Observation eda693ba-eb2a-4d26-84b2-da592db75385 · outbound

This paper cites Distinguishing double neutron star from neutron star-black hole binary populations with gravitational wave observations.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Distinguishing double neutron star from neutron star-black hole binary populations with gravitational wave observations

Reference 86

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local_arxiv, observed 2026-08-15T15:58:54.601940Z

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No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

source=pdf_text observed=2026-08-15T15:58:53.837666Z digest=sha256:0ea8701cbeac2728ac789bdd9132c6aa0cd50d4ac27f89ce73d9199e3ff1532c

Observation 50699409-aa04-446b-add7-4784aaa9df43 · outbound

This paper cites GW190814's secondary component with mass $(2.50-2.67)$ M$_{\odot}$ as a super-fast pulsar.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations GW190814's secondary component with mass $(2.50-2.67)$ M$_{\odot}$ as a super-fast pulsar

Reference 87

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local_arxiv, observed 2026-08-15T15:58:54.588334Z

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No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

source=pdf_text observed=2026-08-15T15:58:53.841699Z digest=sha256:21797d42a804f1a86be1785c79f095114e202f0b09583934ad098c5727a303e9

Observation 4dc8d8e7-46ac-4992-8a02-67f91e42c1fa · outbound

This paper cites Distinguishing high-mass binary neutron stars from binary black holes with second- and third-generation gravitational wave observatories.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Distinguishing high-mass binary neutron stars from binary black holes with second- and third-generation gravitational wave observatories

Reference 88

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local_arxiv, observed 2026-08-15T15:58:54.533777Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

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Observation f4a53ae4-8593-41b9-ae88-0acfd3d5fee2 · outbound

This paper cites Observation of Gravitational Waves from the Coalescence of a $2.5\text{-}4.5~M_\odot$ Compact Object and a Neutron Star.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Observation of Gravitational Waves from the Coalescence of a $2.5\text{-}4.5~M_\odot$ Compact Object and a Neutron Star

Reference 89

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source=pdf_text observed=2026-08-15T15:58:53.849497Z digest=sha256:85629d8c4fc3de0068219579814bac94bc5b596c2db2d9736f4e00910badaa29

Observation a91b4cdd-213e-4912-89ff-ae5de7efeceb · outbound

This paper cites Colpi, S.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Colpi, S

Reference 90

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source=pdf_text observed=2026-08-15T15:58:53.852554Z digest=sha256:64ac9b4cbb9417e04a3a0077856b17aac97736070ca1762d50e73da85432ba6b

Observation b64be793-1f0c-42cf-b24d-324a90a1bd45 · outbound

This paper cites Tidal deformability and I-Love-Q relations for gravastars with polytropic thin shells.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Tidal deformability and I-Love-Q relations for gravastars with polytropic thin shells

Reference 91

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source=pdf_text observed=2026-08-15T15:58:53.855649Z digest=sha256:06e8cb10f3f79978d92cc6a88ee453136a4aac7eb5fbee3b7e3bb2a1b3d63b2d

Observation 2ba8a253-0961-4c0c-b6d0-48ab0f62128c · outbound

This paper cites Marsat, Class.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Marsat, Class

Reference 92

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no resolver link, observed 2026-08-15T15:58:53.859079Z

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source=pdf_text observed=2026-08-15T15:58:53.859079Z digest=sha256:1f1c6a4a8b25a1bfa20e5db538786382d6277011bfbfd517e78e8fc4b8d821b8

Observation 021ee3b0-b4f5-4830-84cf-ef026efc0d7e · outbound

This paper cites Spin effects on gravitational waves from inspiraling compact binaries at second post-Newtonian order.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Spin effects on gravitational waves from inspiraling compact binaries at second post-Newtonian order

Reference 93

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source=pdf_text observed=2026-08-15T15:58:53.862874Z digest=sha256:1c2272c15a60ef70771b4fb2ec556679968269dd5b4dc08a3122c4f393179bce

Observation 9f98284b-411f-4bac-bfbe-9a80eca1202a · outbound

This paper cites Higher-order spin effects in the amplitude and phase of gravitational waveforms emitted by inspiraling compact binaries: Ready-to-use gravitational waveforms.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Higher-order spin effects in the amplitude and phase of gravitational waveforms emitted by inspiraling compact binaries: Ready-to-use gravitational waveforms

Reference 94

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Observation f7bd5d50-8a4f-42eb-bc99-3f60773e5b00 · outbound

This paper cites Kidder, Phys.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Kidder, Phys

Reference 95

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no resolver link, observed 2026-08-15T15:58:53.869918Z

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source=pdf_text observed=2026-08-15T15:58:53.869918Z digest=sha256:01c1486d80ee115278088cadb01a2973758a9ad5839a360622671b2953ba2775

Observation aaf76010-aa3d-40d6-88f7-c7fb7c8bca53 · outbound

This paper cites Next-to-next-to-leading order spin-orbit effects in the equations of motion of compact binary systems.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Next-to-next-to-leading order spin-orbit effects in the equations of motion of compact binary systems

Reference 96

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source=pdf_text observed=2026-08-15T15:58:53.872706Z digest=sha256:64d0758d1c73dc21745267266798fc2205ce641d6043aef40e7c00fe4c1462ea

Observation f2124a57-686d-490b-b4cd-52e03b752771 · outbound

This paper cites Next-to-next-to-leading order spin-orbit effects in the near-zone metric and precession equations of compact binaries.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Next-to-next-to-leading order spin-orbit effects in the near-zone metric and precession equations of compact binaries

Reference 97

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source=pdf_text observed=2026-08-15T15:58:53.877198Z digest=sha256:5eda65e065b24ca48dd5821f596e19e6bb8fafc6f06b11ae17c833c8b3855bf9

Observation 90be8a92-7862-4fef-99e4-9cfa049a12d3 · outbound

This paper cites Next-to-next-to-leading order spin-orbit effects in the gravitational wave flux and orbital phasing of compact binaries.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Next-to-next-to-leading order spin-orbit effects in the gravitational wave flux and orbital phasing of compact binaries

Reference 98

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no resolver link, observed 2026-08-15T15:58:53.880553Z

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source=pdf_text observed=2026-08-15T15:58:53.880553Z digest=sha256:66b9a97066373c81cafdae76c8f9a38f771ed3854ec9fa1343f8599568a4a944

Observation ee347d1d-86a3-44e9-8c39-de415bcb64a8 · outbound

This paper cites Next-to-leading tail-induced spin-orbit effects in the gravitational radiation flux of compact binaries.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Next-to-leading tail-induced spin-orbit effects in the gravitational radiation flux of compact binaries

Reference 99

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no resolver link, observed 2026-08-15T15:58:53.884332Z

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source=pdf_text observed=2026-08-15T15:58:53.884332Z digest=sha256:b146efc438c253a65dd54e3c7981eafeba2430b1922e1a2d553794a9ef745049

Observation 8c63a9b1-4dba-4c09-bd00-28b963979307 · outbound

This paper cites Ready-to-use post-Newtonian gravitational waveforms for binary black holes with non-precessing spins: An update.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Ready-to-use post-Newtonian gravitational waveforms for binary black holes with non-precessing spins: An update

Reference 100

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source=pdf_text observed=2026-08-15T15:58:53.888494Z digest=sha256:ac3f3cab02fc95698fa4528156ad9f470e15784c0402dde41a5fff53f76df0ad

Observation 303d7801-d980-4db7-adb7-299e5c61e929 · outbound

This paper cites Comparison of post-Newtonian templates for compact binary inspiral signals in gravitational-wave detectors.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Comparison of post-Newtonian templates for compact binary inspiral signals in gravitational-wave detectors

Reference 101

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source=pdf_text observed=2026-08-15T15:58:53.891883Z digest=sha256:fd6a0ca0ba5e232ea8fa4f559844513d9f232cba997288d7d21bfbb43c6f05cb

Observation 0db7a2b5-d796-40ee-9886-31ffbb418ac6 · outbound

This paper cites Spin-induced deformations and tests of binary black hole nature using third-generation detectors.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Spin-induced deformations and tests of binary black hole nature using third-generation detectors

Reference 102

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no resolver link, observed 2026-08-15T15:58:53.896741Z

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source=pdf_text observed=2026-08-15T15:58:53.896741Z digest=sha256:24f21bb70b9b9c2195b95536f33f5e899f8376ff4985048fdec423f5184d178b

Observation d72493ac-6dd6-41d6-828b-8edaccb7617b · outbound

This paper cites Extracting equation of state parameters from black hole-neutron star mergers: aligned-spin black holes and a preliminary waveform model.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Extracting equation of state parameters from black hole-neutron star mergers: aligned-spin black holes and a preliminary waveform model

Reference 103

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source=pdf_text observed=2026-08-15T15:58:53.900707Z digest=sha256:f1f2ad8909fb0c4d930636a6a0ee86dcac10df3d30e8a3013ca76614f3984c94

Observation 9fe9fb22-edf1-4f7a-8f88-22a39821f455 · outbound

This paper cites Aligned spin neutron star-black hole mergers: a gravitational waveform amplitude model.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Aligned spin neutron star-black hole mergers: a gravitational waveform amplitude model

Reference 104

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no resolver link, observed 2026-08-15T15:58:53.903748Z

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source=pdf_text observed=2026-08-15T15:58:53.903748Z digest=sha256:1c3b01bdf0c059579d8c4959f6fc28c57105044d3f96de02dc29244fee83f0b0

Observation f0043cf2-9265-45f9-b201-1a188a7d97e8 · outbound

This paper cites Constraining the neutron star equation of state with gravitational wave signals from coalescing binary neutron stars.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Constraining the neutron star equation of state with gravitational wave signals from coalescing binary neutron stars

Reference 105

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no resolver link, observed 2026-08-15T15:58:53.907189Z

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source=pdf_text observed=2026-08-15T15:58:53.907189Z digest=sha256:f97d3036affefbaf87602c7cf99951c69a5255cc91fc8fc0fb17c11810f77712

Observation 0f0859d8-323f-4fae-b950-badf244fefe7 · outbound

This paper cites Frequency-domain P-approximant filters for time-truncated inspiral gravitational wave signals from compact binaries.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Frequency-domain P-approximant filters for time-truncated inspiral gravitational wave signals from compact binaries

Reference 106

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source=pdf_text observed=2026-08-15T15:58:53.910592Z digest=sha256:2af7312fd4f7fdcde5952f39f37aba855b8698351e91cdcd6dbc467b3f3edd68

Observation 2fc1c3e2-3491-487d-b246-a9914f5a7a2d · outbound

This paper cites Damour, B.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Damour, B

Reference 107

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source=pdf_text observed=2026-08-15T15:58:53.914347Z digest=sha256:0c415ab6b7a3b6be8d6c5bc2370361629f12c722a5be7beb3b50d45bd6ab81c8

Observation ee6b1f96-8a1f-47d5-bde9-9acff2e5fcbd · outbound

This paper cites Damour, B.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Damour, B

Reference 108

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raw_fallback, observed 2026-08-15T15:58:54.257961Z

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source=pdf_text observed=2026-08-15T15:58:53.917891Z digest=sha256:d73aef1d3b00fb067fbe1a2ea0aa31ad6211c65821c8d4967e6db62aef7ab40a

Observation f7378660-0053-4c4d-b9f4-19cdaafa616e · outbound

This paper cites Carter, Phys.

Testing the nature of compact objects in the lower mass gap using gravitational wave observations Carter, Phys

Reference 109

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source=pdf_text observed=2026-08-15T15:58:53.920911Z digest=sha256:d5e3e6b967a06e452a5b5c42b9afe6d6ad4648d0b2f42013bac562045b8b2dbf

Pith citing papers

Observation e8b89fdd-ef8e-40bd-ae7b-57559bab0a7f · inbound

Compactness Inference in Gravitational-Wave Mergers with PhenomDECO: Catalog Benchmarks and Robustness Diagnostics cites this paper.

Compactness Inference in Gravitational-Wave Mergers with PhenomDECO: Catalog Benchmarks and Robustness Diagnostics Testing the nature of compact objects in the lower mass gap using gravitational wave observations

Reference 53

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arxiv_id, observed 2026-07-01T11:25:44.789289Z

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No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

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Observation e06ed012-7218-4531-9886-a85f41402f64 · inbound

Compactness Inference in Gravitational-Wave Mergers with PhenomDECO: Catalog Benchmarks and Robustness Diagnostics cites this paper.

Compactness Inference in Gravitational-Wave Mergers with PhenomDECO: Catalog Benchmarks and Robustness Diagnostics Testing the nature of compact objects in the lower mass gap using gravitational wave observations

Reference 53

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arxiv_id, observed 2026-07-03T22:28:59.993961Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

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Observation c5e398dc-a393-4b2a-8879-31c3c8b5639a · inbound

Compactness Inference in Gravitational-Wave Mergers with PhenomDECO: Catalog Benchmarks and Robustness Diagnostics cites this paper.

Compactness Inference in Gravitational-Wave Mergers with PhenomDECO: Catalog Benchmarks and Robustness Diagnostics Testing the nature of compact objects in the lower mass gap using gravitational wave observations

Reference 53

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no resolver link, observed 2026-08-02T09:27:41.320753Z

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source=pdf_text observed=2026-08-02T09:27:41.320753Z digest=sha256:bf5f9e98439a89b5cc5e86026ef6cac7d4995185e956e429a333a6ca0eac54bd

Observation a195d077-e86f-4805-bcf4-9b584628eeb4 · inbound

Establishing Compactness as a Population Observable in Gravitational-Wave Astronomy cites this paper.

Establishing Compactness as a Population Observable in Gravitational-Wave Astronomy Testing the nature of compact objects in the lower mass gap using gravitational wave observations

Reference 47

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arxiv_id, observed 2026-07-01T11:35:42.608433Z

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No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

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Observation b5ed74db-b12c-4b05-a936-05d6f5a9a6f8 · inbound

Establishing Compactness as a Population Observable in Gravitational-Wave Astronomy cites this paper.

Establishing Compactness as a Population Observable in Gravitational-Wave Astronomy Testing the nature of compact objects in the lower mass gap using gravitational wave observations

Reference 47

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arxiv_id, observed 2026-07-03T22:29:00.070058Z

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No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

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Observation 8c8622b9-602b-4bf6-a9fd-a28e6e805cb5 · inbound

Establishing Compactness as a Population Observable in Gravitational-Wave Astronomy cites this paper.

Establishing Compactness as a Population Observable in Gravitational-Wave Astronomy Testing the nature of compact objects in the lower mass gap using gravitational wave observations

Reference 47

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