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Paper Citation Record · LEDGER

The Challenge of Detecting Quantum Nature of Gravitational Waves

As of 18 August 2026, this Paper Citation Record lists 35 of 35 outbound references and 0 inbound Pith citation observations for arXiv:2608.08803.

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

pith.paper-citation-record.v1
2608.08803 v1

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measured 35 of 35 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-14T04:40:13.802006Z

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35 of 35 outbound references displayed

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Outbound references

Observation f762d254-9356-4139-b04c-13cfb37d314a · outbound

This paper cites Dyson,Is a graviton detectable?,Int.

The Challenge of Detecting Quantum Nature of Gravitational Waves Dyson,Is a graviton detectable?,Int

Reference 1

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Observation 90e9a892-bf28-4612-a0b9-0b8ef2ed7c90 · outbound

This paper cites Detecting single gravitons with quantum sensing.

The Challenge of Detecting Quantum Nature of Gravitational Waves Detecting single gravitons with quantum sensing

Reference 2

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Observation 77e10b53-968a-4591-b249-26355fbe580b · outbound

This paper cites Graviton detection and the quantization of gravity.

The Challenge of Detecting Quantum Nature of Gravitational Waves Graviton detection and the quantization of gravity

Reference 3

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Observation cc1dcd6f-e5a3-4763-a802-24a762723ca5 · outbound

This paper cites Glauber,Coherent and incoherent states of the radiation field,Phys.

The Challenge of Detecting Quantum Nature of Gravitational Waves Glauber,Coherent and incoherent states of the radiation field,Phys

Reference 4

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Observation 79769aee-2065-487b-aea1-428fcce2f8b8 · outbound

This paper cites Sudarshan,Equivalence of semiclassical and quantum mechanical descriptions of statistical light beams,Phys.

The Challenge of Detecting Quantum Nature of Gravitational Waves Sudarshan,Equivalence of semiclassical and quantum mechanical descriptions of statistical light beams,Phys

Reference 5

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Observation 26782d3c-250c-42d2-b30d-fa16c754c426 · outbound

This paper cites Semiclassicality and Decoherence of Cosmological Perturbations.

The Challenge of Detecting Quantum Nature of Gravitational Waves Semiclassicality and Decoherence of Cosmological Perturbations

Reference 6

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Observation 954762b4-ae74-4a77-a4d9-6ed414bd2739 · outbound

This paper cites The Detectability of Relic (Squeezed) Gravitational Waves by Laser Interferometers.

The Challenge of Detecting Quantum Nature of Gravitational Waves The Detectability of Relic (Squeezed) Gravitational Waves by Laser Interferometers

Reference 7

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Observation 53777871-a649-4267-b23b-65f0d6814d5e · outbound

This paper cites Is the squeezing of relic gravitational waves produced by inflation detectable?.

The Challenge of Detecting Quantum Nature of Gravitational Waves Is the squeezing of relic gravitational waves produced by inflation detectable?

Reference 8

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Observation a74deae0-f9cd-462b-a6b5-d57103fb04d1 · outbound

This paper cites Kanno, J.

The Challenge of Detecting Quantum Nature of Gravitational Waves Kanno, J

Reference 9

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Observation cccca428-149c-4e2e-8284-fa29bb2783ee · outbound

This paper cites Squeezed Quasinormal Modes from Nonlinear Gravitational Effects.

The Challenge of Detecting Quantum Nature of Gravitational Waves Squeezed Quasinormal Modes from Nonlinear Gravitational Effects

Reference 10

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Observation d6f7c2f3-76df-496c-9dbf-fbaa2db0029f · outbound

This paper cites an unresolved cited work.

The Challenge of Detecting Quantum Nature of Gravitational Waves Unresolved cited work

Reference 11

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Observation 6ef6a9cf-a5cb-43ff-b841-dbe000c921c7 · outbound

This paper cites Quantum Mechanics of Gravitational Waves.

The Challenge of Detecting Quantum Nature of Gravitational Waves Quantum Mechanics of Gravitational Waves

Reference 12

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Observation d6ed6a06-a1c0-4cbe-8d47-b55416316058 · outbound

This paper cites Indirect detection of gravitons through quantum entanglement.

The Challenge of Detecting Quantum Nature of Gravitational Waves Indirect detection of gravitons through quantum entanglement

Reference 13

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Observation fea357b2-ab24-43e2-ae1d-aa85972630ca · outbound

This paper cites Bound on Quantum Fluctuations in Gravitational Waves from LIGO-Virgo.

The Challenge of Detecting Quantum Nature of Gravitational Waves Bound on Quantum Fluctuations in Gravitational Waves from LIGO-Virgo

Reference 14

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Observation 7b701335-4771-462a-9e78-29df1eaf33f9 · outbound

This paper cites Possible detection of nonclassical primordial gravitational waves with Hanbury Brown - Twiss interferometry.

The Challenge of Detecting Quantum Nature of Gravitational Waves Possible detection of nonclassical primordial gravitational waves with Hanbury Brown - Twiss interferometry

Reference 15

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Observation f8da18d1-0d84-49ee-93f7-be896ca91662 · outbound

This paper cites Binary gravitational waves as probes of quantum graviton states.

The Challenge of Detecting Quantum Nature of Gravitational Waves Binary gravitational waves as probes of quantum graviton states

Reference 16

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Observation 5efddb03-1b37-4eab-b267-4b1642adebcb · outbound

This paper cites Detector Correlations and Null Tests of the Coherent State Hypothesis.

The Challenge of Detecting Quantum Nature of Gravitational Waves Detector Correlations and Null Tests of the Coherent State Hypothesis

Reference 17

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Observation 9bac6770-6da2-4ce1-9165-cdf779c1041a · outbound

This paper cites Toccacelo, T.

The Challenge of Detecting Quantum Nature of Gravitational Waves Toccacelo, T

Reference 18

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Observation 3c57737b-584a-4661-8fd3-ba07d35c1705 · outbound

This paper cites Toward graviton detection via photon-graviton quantum state conversion.

The Challenge of Detecting Quantum Nature of Gravitational Waves Toward graviton detection via photon-graviton quantum state conversion

Reference 19

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Observation 7df12a12-e542-4483-ba25-afcc5efb51d2 · outbound

This paper cites A postquantum theory of classical gravity?.

The Challenge of Detecting Quantum Nature of Gravitational Waves A postquantum theory of classical gravity?

Reference 20

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Observation 12cbebea-5f1d-413e-9b31-333d2a830b62 · outbound

This paper cites Emergence of Non-Markovian Classical-Quantum Dynamics from Decoherence.

The Challenge of Detecting Quantum Nature of Gravitational Waves Emergence of Non-Markovian Classical-Quantum Dynamics from Decoherence

Reference 21

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Observation 6b94dec2-f27c-4502-abc3-8dc81916d346 · outbound

This paper cites Suppressed Quantum Effects of Weakly Coupled Waves.

The Challenge of Detecting Quantum Nature of Gravitational Waves Suppressed Quantum Effects of Weakly Coupled Waves

Reference 22

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Observation c0b46b13-3341-4151-bb87-9a0ce2ac9934 · outbound

This paper cites Agarwal,Quantum Optics, Cambridge University Press (2013).

The Challenge of Detecting Quantum Nature of Gravitational Waves Agarwal,Quantum Optics, Cambridge University Press (2013)

Reference 23

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Observation a2aa99aa-72eb-4689-a4f7-3423eb6aca43 · outbound

This paper cites Gaussian Quantum Information.

The Challenge of Detecting Quantum Nature of Gravitational Waves Gaussian Quantum Information

Reference 24

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Observation 5944d9cd-8c57-4cf7-b701-80619d0e64c8 · outbound

This paper cites Williamson,On the algebraic problem concerning the normal forms of linear dynamical systems,American Journal of Mathematics58(1936) 141.

The Challenge of Detecting Quantum Nature of Gravitational Waves Williamson,On the algebraic problem concerning the normal forms of linear dynamical systems,American Journal of Mathematics58(1936) 141

Reference 25

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Observation 76731ad0-ad8d-4bd7-b87d-240318df4425 · outbound

This paper cites Dorlis, N.E.

The Challenge of Detecting Quantum Nature of Gravitational Waves Dorlis, N.E

Reference 26

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Observation 466d0955-0997-497f-8346-ff46c8ae10c7 · outbound

This paper cites Gravitational wave astronomy with the SKA.

The Challenge of Detecting Quantum Nature of Gravitational Waves Gravitational wave astronomy with the SKA

Reference 27

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Observation 0a9f4757-564c-4b09-9127-59fc9a3715a4 · outbound

This paper cites The construction and use of LISA sensitivity curves.

The Challenge of Detecting Quantum Nature of Gravitational Waves The construction and use of LISA sensitivity curves

Reference 28

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Observation 152921f0-c3ed-4c15-b380-a5c91dcfc95b · outbound

This paper cites Harry, P.

The Challenge of Detecting Quantum Nature of Gravitational Waves Harry, P

Reference 29

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Observation 5e80c4ca-9d8f-403a-a66d-3df4888cc11d · outbound

This paper cites A Horizon Study for Cosmic Explorer: Science, Observatories, and Community.

The Challenge of Detecting Quantum Nature of Gravitational Waves A Horizon Study for Cosmic Explorer: Science, Observatories, and Community

Reference 30

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Observation 17291fca-9c67-4ddd-bb7c-01cc93400dc8 · outbound

This paper cites Science-Driven Tunable Design of Cosmic Explorer Detectors.

The Challenge of Detecting Quantum Nature of Gravitational Waves Science-Driven Tunable Design of Cosmic Explorer Detectors

Reference 31

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Observation acc3ec7a-b8ca-4443-8f9c-c84301528f86 · outbound

This paper cites Searching for new physics with a levitated-sensor-based gravitational-wave detector.

The Challenge of Detecting Quantum Nature of Gravitational Waves Searching for new physics with a levitated-sensor-based gravitational-wave detector

Reference 32

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Observation 9299c6dd-bb78-456c-b09e-acb099b1bfe8 · outbound

This paper cites Laser-interferometric Detectors for Gravitational Wave Background at 100 MHz : Detector Design and Sensitivity.

The Challenge of Detecting Quantum Nature of Gravitational Waves Laser-interferometric Detectors for Gravitational Wave Background at 100 MHz : Detector Design and Sensitivity

Reference 33

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Observation 470f1aa8-9a5a-4322-b60d-e78dd0781d41 · outbound

This paper cites Dielectric Haloscopes as Gravitational Wave Detectors.

The Challenge of Detecting Quantum Nature of Gravitational Waves Dielectric Haloscopes as Gravitational Wave Detectors

Reference 34

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Observation 48f9e021-86d0-41c4-87e0-d4219e273ba9 · outbound

This paper cites Searching for High Frequency Gravitational Waves with Phonons.

The Challenge of Detecting Quantum Nature of Gravitational Waves Searching for High Frequency Gravitational Waves with Phonons

Reference 35

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