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Paper Citation Record · LEDGER

Correlation and Entanglement partners in Gaussian systems

As of 18 August 2026, this Paper Citation Record lists 59 of 59 outbound references and 5 inbound Pith citation observations for arXiv:2512.11055.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2512.11055 v2

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measured 59 of 59 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-03T17:14:22.877793Z

measured 64 of 64 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-18T06:34:40.430872+00:00

measured 5 of 5 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-03T15:12:55.682052Z

measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: arxiv_reference, observed 2026-07-03T13:08:07.943804Z

Reference resolution

59 of 59 outbound references displayed

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External citation measurements

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Outbound references

Observation c2ff8cc0-511e-4203-9687-f8d0746d776b · outbound

This paper cites system-local.

Correlation and Entanglement partners in Gaussian systems system-local

Reference 1

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source=pdf_text observed=2026-08-03T17:14:18.199549Z digest=sha256:b5e7ac08cda562147a1ee024653eefbcbd5615613e3a2907e4d37c996532fd25

Observation eef7417b-61c3-476c-8ece-77ed884228bb · outbound

This paper cites classical-like.

Correlation and Entanglement partners in Gaussian systems classical-like

Reference 2

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source=pdf_text observed=2026-08-03T17:14:18.305040Z digest=sha256:9e555925b0a77f04fd4f7bccfc6f1621834792c395189c0079f31b447a16a2d7

Observation e0610cad-03c3-48b6-92d6-be5aeebe8727 · outbound

This paper cites Properties 1 and 3 indicate thatσdefines an inner product on Γ, which implies that any quantum state de- fines a metric in the classical phase space.

Correlation and Entanglement partners in Gaussian systems Properties 1 and 3 indicate thatσdefines an inner product on Γ, which implies that any quantum state de- fines a metric in the classical phase space

Reference 3

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Observation a16486b7-abed-4214-84a1-7022d3540085 · outbound

This paper cites an unresolved cited work.

Correlation and Entanglement partners in Gaussian systems Unresolved cited work

Reference 4

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Observation 349b49c5-a68d-417f-8e2e-43ba89f8896d · outbound

This paper cites symplectic eigenvalues of σ.

Correlation and Entanglement partners in Gaussian systems symplectic eigenvalues of σ

Reference 5

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Observation 88a21fb1-1230-4233-99ae-61fabd4d5295 · outbound

This paper cites normal” or “Williamson.

Correlation and Entanglement partners in Gaussian systems normal” or “Williamson

Reference 6

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Observation dea5080f-b79e-480a-9d68-1cd97f6cc4c6 · outbound

This paper cites A basis of the partner mode ofAis made of (1− Πa)J γa and its conjugate.

Correlation and Entanglement partners in Gaussian systems A basis of the partner mode ofAis made of (1− Πa)J γa and its conjugate

Reference 7

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Observation 3a6db6d4-0e9e-44c5-bb1b-a9b3d4667fe5 · outbound

This paper cites That is,A cp contains all degrees of freedom in the system that are correlated with those inA.

Correlation and Entanglement partners in Gaussian systems That is,A cp contains all degrees of freedom in the system that are correlated with those inA

Reference 8

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Observation 0ec030d5-0393-4f5e-b40e-b636340ba248 · outbound

This paper cites This holds becauseJleaves invariant both Π + I Γa and Π − I Γa, for allI, as Π ± I project onto eigenspaces ofJ.

Correlation and Entanglement partners in Gaussian systems This holds becauseJleaves invariant both Π + I Γa and Π − I Γa, for allI, as Π ± I project onto eigenspaces ofJ

Reference 9

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Observation 277a5ac8-3335-484d-b347-118f12cf25fa · outbound

This paper cites For mixed ˆρ, this is no longer true, and in order to find the entanglement partner, it is insufficient to just look atJ(or, equivalently,σ).

Correlation and Entanglement partners in Gaussian systems For mixed ˆρ, this is no longer true, and in order to find the entanglement partner, it is insufficient to just look atJ(or, equivalently,σ)

Reference 10

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Observation f62aa1d0-f461-4128-8b3f-0d22f71a5445 · outbound

This paper cites This would contradict the fact that⟨·,(−I−iJ Ta )·⟩is positive semi-definite on the symplectic orthogonal complement of Γ 1.

Correlation and Entanglement partners in Gaussian systems This would contradict the fact that⟨·,(−I−iJ Ta )·⟩is positive semi-definite on the symplectic orthogonal complement of Γ 1

Reference 11

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Observation 11f3cc85-d23b-4c80-ba36-8c6dd54aae72 · outbound

This paper cites How ubiquitous is entanglement in quantum field theory?.

Correlation and Entanglement partners in Gaussian systems How ubiquitous is entanglement in quantum field theory?

Reference 12

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Observation 5b94162b-607b-4e25-b746-7c3620120a0b · outbound

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Correlation and Entanglement partners in Gaussian systems Unresolved cited work

Reference 13

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Observation 58fadc85-fbda-4fb6-9a53-5e1c85c15ded · outbound

This paper cites 14 2.σ(γ ∗, γ)+⟨γ, γ⟩is equal to 2 Tr[ˆρˆOγ ˆO † γ].

Correlation and Entanglement partners in Gaussian systems 14 2.σ(γ ∗, γ)+⟨γ, γ⟩is equal to 2 Tr[ˆρˆOγ ˆO † γ]

Reference 14

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Observation 65a73900-f78f-4a81-a8a7-62f74d2d5076 · outbound

This paper cites Let us define the sesquilinear map (·,·) in Γ C as (γ, γ′)≡σ(γ ∗, γ′).

Correlation and Entanglement partners in Gaussian systems Let us define the sesquilinear map (·,·) in Γ C as (γ, γ′)≡σ(γ ∗, γ′)

Reference 15

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Observation 287b6f30-f10c-4226-b2d3-b966d50f3791 · outbound

This paper cites This is equivalent toσ ab =−ℏ −1ΩacJ c b or, equivalently, σ(·,·) =−ℏ −1Ω(·, J·).

Correlation and Entanglement partners in Gaussian systems This is equivalent toσ ab =−ℏ −1ΩacJ c b or, equivalently, σ(·,·) =−ℏ −1Ω(·, J·)

Reference 16

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Observation c8dc97a9-f020-4533-a3df-fd3e90d1f309 · outbound

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Correlation and Entanglement partners in Gaussian systems Unresolved cited work

Reference 17

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Observation 4ad101d0-73d8-4c74-ad89-ae35562f54eb · outbound

This paper cites Therefore, it suffices to show thatJis anti-Hermitian with respect to a suitable Hermitian inner product on Γ C.

Correlation and Entanglement partners in Gaussian systems Therefore, it suffices to show thatJis anti-Hermitian with respect to a suitable Hermitian inner product on Γ C

Reference 18

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Observation bb2af8c4-dd14-4a1f-9202-117127219ef7 · outbound

This paper cites We denote bye I (without complex conjugate) the eigenvector ofJwith eigenvalue +iν I , withν I a non-negative real number.

Correlation and Entanglement partners in Gaussian systems We denote bye I (without complex conjugate) the eigenvector ofJwith eigenvalue +iν I , withν I a non-negative real number

Reference 19

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Observation b0754516-41a1-4b79-9184-0214aaa2e835 · outbound

This paper cites For a single-mode subsystemA,J Ta has at most one symplec- tic eigenvalue smaller than one,.

Correlation and Entanglement partners in Gaussian systems For a single-mode subsystemA,J Ta has at most one symplec- tic eigenvalue smaller than one,

Reference 20

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Observation 25ddd3b4-ef03-49b3-ab9b-6b57e4b6e834 · outbound

This paper cites partners.

Correlation and Entanglement partners in Gaussian systems partners

Reference 21

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Correlation and Entanglement partners in Gaussian systems Unresolved cited work

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Observation 330995b2-0ee8-4141-9389-d5989e1e13d1 · outbound

This paper cites Weedbrook, S.

Correlation and Entanglement partners in Gaussian systems Weedbrook, S

Reference 23

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Observation 9e04ec0c-2ee2-4d6f-8d2e-1a9d1a154fc6 · outbound

This paper cites Serafini,Quantum Continuous Variables(CRC Press, 2017).

Correlation and Entanglement partners in Gaussian systems Serafini,Quantum Continuous Variables(CRC Press, 2017)

Reference 24

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Observation 3a33ec79-fcd6-4b3c-b8f1-88cdd0b1530a · outbound

This paper cites Adesso, S.

Correlation and Entanglement partners in Gaussian systems Adesso, S

Reference 25

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Observation adb49f4b-1efa-4b32-abf7-9db4fc7ab9d0 · outbound

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Correlation and Entanglement partners in Gaussian systems Hotta, R

Reference 26

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Observation 2cca7f35-c694-4e49-b972-ec9b15bf7254 · outbound

This paper cites Trevison, K.

Correlation and Entanglement partners in Gaussian systems Trevison, K

Reference 27

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Observation 0f18c75e-5612-47cc-aa47-205a3aa88314 · outbound

This paper cites Tomitsuka, K.

Correlation and Entanglement partners in Gaussian systems Tomitsuka, K

Reference 28

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Observation e2e3e41b-b5d3-4eac-aadb-63b238a8a8f5 · outbound

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Correlation and Entanglement partners in Gaussian systems Nambu and K

Reference 29

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Observation e8e7bcc0-848e-4b71-9d4e-dbfa31368890 · outbound

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Correlation and Entanglement partners in Gaussian systems Unresolved cited work

Reference 30

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Observation 8a0317f5-4c0b-4852-b4f5-239ba41bbc1d · outbound

This paper cites Osawa, K.-N.

Correlation and Entanglement partners in Gaussian systems Osawa, K.-N

Reference 31

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Correlation and Entanglement partners in Gaussian systems Unresolved cited work

Reference 32

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Observation f77b420e-2ed2-4c66-8277-aa1dd2530e5d · outbound

This paper cites Inflation does not create entanglement in local observables.

Correlation and Entanglement partners in Gaussian systems Inflation does not create entanglement in local observables

Reference 33

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Observation 433d6bf2-c8ec-4756-b270-bae083b661d8 · outbound

This paper cites Ribes-Metidieri, I.

Correlation and Entanglement partners in Gaussian systems Ribes-Metidieri, I

Reference 34

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Observation 3581d8fd-1889-4806-acec-68c383e53880 · outbound

This paper cites Trevison, K.

Correlation and Entanglement partners in Gaussian systems Trevison, K

Reference 35

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Observation 296963fd-eaef-4d5f-9ddb-f44a25efc14b · outbound

This paper cites Hackl and R.

Correlation and Entanglement partners in Gaussian systems Hackl and R

Reference 36

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Observation be1d58cf-6d92-4904-b1a3-7c2d43707025 · outbound

This paper cites Osawa, Y.

Correlation and Entanglement partners in Gaussian systems Osawa, Y

Reference 37

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Observation d3b446c8-f03a-4c43-bf15-daf6d8de9516 · outbound

This paper cites Hackl and E.

Correlation and Entanglement partners in Gaussian systems Hackl and E

Reference 38

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Observation 4a91b6e8-efe0-4228-b2e0-b331c685d791 · outbound

This paper cites Entanglement dualities in supersymmetry.

Correlation and Entanglement partners in Gaussian systems Entanglement dualities in supersymmetry

Reference 39

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source=pdf_text observed=2026-08-03T17:14:20.987449Z digest=sha256:2e779d2fe3e6d402f03ff45355dd27538c2190b3af2640cd7be466c66e04a839

Observation 72911ce5-bbb1-4f26-ae0c-394bf5d45ed7 · outbound

This paper cites Yamaguchi and M.

Correlation and Entanglement partners in Gaussian systems Yamaguchi and M

Reference 40

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Observation 65a0274a-141f-4f4a-80ed-04a3d1debf5d · outbound

This paper cites Yamaguchi, A.

Correlation and Entanglement partners in Gaussian systems Yamaguchi, A

Reference 41

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source=pdf_text observed=2026-08-03T17:14:21.212165Z digest=sha256:6f615582d2082a4566e953672a7461095ccc5c3448319aea75d8fed72e8202e9

Observation 1fcac42d-3372-4631-83cd-5b684a606aea · outbound

This paper cites Yamaguchi,Quantum Information Capsule and Its Applications to Communication Through Quantum Fields, Ph.D.

Correlation and Entanglement partners in Gaussian systems Yamaguchi,Quantum Information Capsule and Its Applications to Communication Through Quantum Fields, Ph.D

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source=pdf_text observed=2026-08-03T17:14:21.293877Z digest=sha256:49e6f6f4d330a08192039fc358accb794f07d42ad8123da756846fa1f04a4ae4

Observation e86ab82e-f4e7-49d4-8b88-e4cae7c8b182 · outbound

This paper cites The multimode nature of spacetime entanglement in QFT.

Correlation and Entanglement partners in Gaussian systems The multimode nature of spacetime entanglement in QFT

Reference 43

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source=pdf_text observed=2026-08-03T17:14:21.405527Z digest=sha256:a7cbbc4d72c467570c802a7cf7eaf9e9100ce0f35354109d568c3b8afc5cd060

Observation 299c28c6-7d03-4b26-bfc5-984183a5b694 · outbound

This paper cites Klco and M.

Correlation and Entanglement partners in Gaussian systems Klco and M

Reference 44

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source=pdf_text observed=2026-08-03T17:14:21.513830Z digest=sha256:2ecf09980d88f65669ee156743c5fcf6dfce768ea7f7a3613952790224c134a3

Observation ebf1d283-aaf4-4ae4-802c-0e2ca1946bb5 · outbound

This paper cites Klco and M.

Correlation and Entanglement partners in Gaussian systems Klco and M

Reference 45

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source=pdf_text observed=2026-08-03T17:14:21.671493Z digest=sha256:e4890018dc1125d01ce0d19a0f5fcb87780a70a76539ee2d1ae0c89b444af15f

Observation 3617fae9-a94b-4d38-8bc4-84a354f436d4 · outbound

This paper cites an unresolved cited work.

Correlation and Entanglement partners in Gaussian systems Unresolved cited work

Reference 46

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source=pdf_text observed=2026-08-03T17:14:21.781871Z digest=sha256:56b35acbeb4a037dc11daf3bf11b8de8b9d912e18d760e8a7ad6e82b6a4176e1

Observation ca31de23-625c-4ca6-83dc-245f8b568d86 · outbound

This paper cites Gao and N.

Correlation and Entanglement partners in Gaussian systems Gao and N

Reference 47

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source=pdf_text observed=2026-08-03T17:14:21.915048Z digest=sha256:57fbd485241c24f5d46462cb8a9acb89a0c494362673927e81ab004afb10aebd

Observation b1fb3acb-bb7b-499a-a781-a2b8230477e5 · outbound

This paper cites Algebraic Quantum Field Theory -- an introduction.

Correlation and Entanglement partners in Gaussian systems Algebraic Quantum Field Theory -- an introduction

Reference 48

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source=pdf_text observed=2026-08-03T17:14:22.023134Z digest=sha256:8b1183cb5f70cd0ed7327e27d977292a20eeeb34ceace6dd214f78fc9ed6f1b0

Observation 38e2bbf7-8afb-4ff6-b34e-bd1213774b7f · outbound

This paper cites Serafini,Quantum Continuous Variables: A Primer of Theoretical Methods(CRC Press, Taylor & Francis Group, 2017).

Correlation and Entanglement partners in Gaussian systems Serafini,Quantum Continuous Variables: A Primer of Theoretical Methods(CRC Press, Taylor & Francis Group, 2017)

Reference 49

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source=pdf_text observed=2026-08-03T17:14:22.173509Z digest=sha256:50968910ad5d7c96109e26c20aa7a17f67fa7f2c9c4ef342c82afa4f081c3b05

Observation 69040e71-041c-47bc-a222-66e37905b696 · outbound

This paper cites Quantum Mechanics in Phase Space: An introduction.

Correlation and Entanglement partners in Gaussian systems Quantum Mechanics in Phase Space: An introduction

Reference 50

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source=pdf_text observed=2026-08-03T17:14:22.253921Z digest=sha256:2e61d8bc1724e9f0dabe1f9a395df9d400362ef49726dde53ed84f3ec72ae74d

Observation c334f859-66fd-4ae2-8467-7bdbb69ed7e2 · outbound

This paper cites Entanglement of Gaussian states.

Correlation and Entanglement partners in Gaussian systems Entanglement of Gaussian states

Reference 51

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source=pdf_text observed=2026-08-03T17:14:22.348313Z digest=sha256:b6255a2b14b1d0003c7871d25e6e423ef7ea4b9bbeb69d16d0621bdcaddb7b6e

Observation 6244a11d-1820-4201-9365-8307862c7b89 · outbound

This paper cites Pedagogical introduction to the entropy of entanglement for Gaussian states.

Correlation and Entanglement partners in Gaussian systems Pedagogical introduction to the entropy of entanglement for Gaussian states

Reference 52

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source=pdf_text observed=2026-08-03T17:14:22.408298Z digest=sha256:0ec412d8f4048957e0b6dbce8c9f840230eb0b1f87c24b8a3dd31edc3ad4671c

Observation 3d2100c8-0687-4b7c-9d4c-e88976110755 · outbound

This paper cites Ashtekar and A.

Correlation and Entanglement partners in Gaussian systems Ashtekar and A

Reference 53

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source=pdf_text observed=2026-08-03T17:14:22.475017Z digest=sha256:eda92a854cec414738284952551e42b138061015191c84bffd14264ef19cd016

Observation 3a60f680-bc52-4321-a242-d766e76fc754 · outbound

This paper cites Serafini, G.

Correlation and Entanglement partners in Gaussian systems Serafini, G

Reference 54

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source=pdf_text observed=2026-08-03T17:14:22.533663Z digest=sha256:9ae4de04670f3d378c95be35dec030021a888d0c3a866bfe1774a318686b06f6

Observation ed400aa2-63ec-4fa2-862c-1d57c3471bbd · outbound

This paper cites Simon, Peres-Horodecki Separability Criterion for Continuous Variable Systems, Phys.

Correlation and Entanglement partners in Gaussian systems Simon, Peres-Horodecki Separability Criterion for Continuous Variable Systems, Phys

Reference 55

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source=pdf_text observed=2026-08-03T17:14:22.633253Z digest=sha256:928704b7d6a7c5254325d1e19a4f181c1e06d17e522b0418bdb67cdd08203f30

Observation 566950d3-8405-4cf2-8fde-4c4df65da823 · outbound

This paper cites Vidal and R.

Correlation and Entanglement partners in Gaussian systems Vidal and R

Reference 56

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source=pdf_text observed=2026-08-03T17:14:22.701732Z digest=sha256:8e32d2ccd39191074754daac1d509298acc70985c795b83386fd3e196c3af2e8

Observation 8d534615-a57e-438e-a8a1-4b79566a6e14 · outbound

This paper cites an unresolved cited work.

Correlation and Entanglement partners in Gaussian systems Unresolved cited work

Reference 57

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source=pdf_text observed=2026-08-03T17:14:22.760156Z digest=sha256:bbc7ce61ae74241dd94560490b5ce210bcc97a1bbdcfebb9c00cef8fae82dcc2

Observation d645983c-9432-4368-bdcc-7446ec9cf654 · outbound

This paper cites Audenaert, M.

Correlation and Entanglement partners in Gaussian systems Audenaert, M

Reference 58

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source=pdf_text observed=2026-08-03T17:14:22.818514Z digest=sha256:d0cdbcc603419abc07091fda99650e9bfceda44d503364090aabd2a7008955ef

Observation 68abac08-26cb-445c-b9fc-d75fec8b302d · outbound

This paper cites an unresolved cited work.

Correlation and Entanglement partners in Gaussian systems Unresolved cited work

Reference 59

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source=pdf_text observed=2026-08-03T17:14:22.877793Z digest=sha256:e36a24a060bae8215234705b67c198e49b59490d64d07495dfa561af77af5179

Pith citing papers

Observation e1a8c068-5438-4d3a-8a03-562eb18c94ba · inbound

Partner-mode overlap as a symplectic-invariant measure of correlations in Gaussian quantum field theories cites this paper.

Partner-mode overlap as a symplectic-invariant measure of correlations in Gaussian quantum field theories Correlation and Entanglement partners in Gaussian systems

Reference 1

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source=pdf_text observed=2026-08-03T15:12:55.682052Z digest=sha256:56ed90ea7e07068841dcab1ba034127b5c2ed3b881ec69a5995d406b3cc4604e

Observation e37a6a98-bc24-4d13-af79-e78787f7fb87 · inbound

When inflationary perturbations refuse to classicalise: the role of non-Gaussianity in Wigner negativity cites this paper.

When inflationary perturbations refuse to classicalise: the role of non-Gaussianity in Wigner negativity Correlation and Entanglement partners in Gaussian systems

Reference 63

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source=pdf_text observed=2026-08-03T06:50:31.849535Z digest=sha256:e40311c5ebfc776a42b4b7bb2a49ba265a0beca3d09056ff95926c6a91855040

Observation 5a5a78b3-b387-4126-9b65-872d485267d5 · inbound

The negativity core of a 1+1D massless scalar quantum field cites this paper.

The negativity core of a 1+1D massless scalar quantum field Correlation and Entanglement partners in Gaussian systems

Reference 47

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verified exact
arxiv_id, observed 2026-07-20T01:18:23.823231Z

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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=2026-05-25T03:57:33.473285Z digest=sha256:241242cd4df5ae429ed3635bac8bc55ce209c69fdd1ee75da1d331bc4dc6a80b

Observation b05ebbc1-e864-49dd-960e-98dd1316a793 · inbound

Quantum Stochastic Inflation cites this paper.

Quantum Stochastic Inflation Correlation and Entanglement partners in Gaussian systems

Reference 24

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arxiv_id, observed 2026-07-20T01:18:23.823231Z

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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=2026-06-27T08:34:06.283341Z digest=sha256:5c8f33a3fec9b437ebd5483db2a6dce2a4c9b7503a5ab0bec2d8354430ec17d7

Observation e2e4d4e0-abd1-4b29-b5b1-6705b39ae122 · inbound

Exact calculation of entanglement negativity for a 1+1D massless scalar field using phase space methods cites this paper.

Exact calculation of entanglement negativity for a 1+1D massless scalar field using phase space methods Correlation and Entanglement partners in Gaussian systems

Reference 31

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arxiv_id, observed 2026-07-20T01:18:23.823231Z

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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=2026-06-30T05:26:48.574436Z digest=sha256:2ac50a1cd27ae7fd5195b8fc18b7fc40b4c9ce0ebb93f8642765edb0899480e9