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Paper Citation Record · LEDGER

Testing the Quantum Equivalence Principle with Gravitational Waves

As of 23 August 2026, this Paper Citation Record lists 23 of 23 outbound references and 0 inbound Pith citation observations for arXiv:2506.14049.

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pith.paper-citation-record.v1
2506.14049 v1

Coverage vector

measured 23 of 23 reference resolution

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Pith citing papers itemized under the disclosed page cap.

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Reference resolution

23 of 23 outbound references displayed

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External citation measurements

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Outbound references

Observation 899f61b9-6b4f-49d2-8dd6-4e6b202fef1b · outbound

This paper cites Zeilinger, Rev.

Testing the Quantum Equivalence Principle with Gravitational Waves Zeilinger, Rev

Reference 1

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This paper cites an unresolved cited work.

Testing the Quantum Equivalence Principle with Gravitational Waves Unresolved cited work

Reference 2

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Observation 9d8c3e51-4345-4414-8f77-f23523785dc9 · outbound

This paper cites Zwiebach.

Testing the Quantum Equivalence Principle with Gravitational Waves Zwiebach

Reference 3

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Observation 18b4627a-03a9-4791-9123-aa9559f02efb · outbound

This paper cites An invitation to loop quantum gravity.

Testing the Quantum Equivalence Principle with Gravitational Waves An invitation to loop quantum gravity

Reference 4

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Observation 3143a3b2-a94f-4c7b-a81a-8f580ea07bf1 · outbound

This paper cites Einstein, The Meaning of Relativity, Princeton University Press: Aberdeen, UK (1922).

Testing the Quantum Equivalence Principle with Gravitational Waves Einstein, The Meaning of Relativity, Princeton University Press: Aberdeen, UK (1922)

Reference 5

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This paper cites Weinberg, Gravitation and Cosmology: Principles and Applications of the General Theory of Relativity, John Wiley and Sons: New York, USA (1972).

Testing the Quantum Equivalence Principle with Gravitational Waves Weinberg, Gravitation and Cosmology: Principles and Applications of the General Theory of Relativity, John Wiley and Sons: New York, USA (1972)

Reference 6

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Observation 581ee888-67d6-4aaf-b455-5475859041eb · outbound

This paper cites Zych and ˇC.

Testing the Quantum Equivalence Principle with Gravitational Waves Zych and ˇC

Reference 7

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Observation d8a7f180-1e8b-46ae-b090-af891b284a96 · outbound

This paper cites General Formalism of the Quantum Equivalence Principle.

Testing the Quantum Equivalence Principle with Gravitational Waves General Formalism of the Quantum Equivalence Principle

Reference 8

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Observation 4662960d-7ebe-487a-8ae0-da0aa2de3a8e · outbound

This paper cites Constraining the generalized uncertainty principle with the gravitational wave event GW150914.

Testing the Quantum Equivalence Principle with Gravitational Waves Constraining the generalized uncertainty principle with the gravitational wave event GW150914

Reference 9

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This paper cites Gravitational Waves in $F(R)$ Gravity: Scalar Waves and the Chameleon Mechanism.

Testing the Quantum Equivalence Principle with Gravitational Waves Gravitational Waves in $F(R)$ Gravity: Scalar Waves and the Chameleon Mechanism

Reference 10

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Observation 573d3a62-e222-458e-82c4-f175e95acc28 · outbound

This paper cites Generalized uncertainty principle in resonant detectors of gravitational waves.

Testing the Quantum Equivalence Principle with Gravitational Waves Generalized uncertainty principle in resonant detectors of gravitational waves

Reference 11

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Observation ca6104dc-d5c7-414c-9a9e-9e1d93c78324 · outbound

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Testing the Quantum Equivalence Principle with Gravitational Waves Unresolved cited work

Reference 12

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Observation 0dea5d81-ce62-44a5-b01f-36d8d9f223c3 · outbound

This paper cites Bounds on GUP parameters from GW150914 and GW190521.

Testing the Quantum Equivalence Principle with Gravitational Waves Bounds on GUP parameters from GW150914 and GW190521

Reference 13

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This paper cites Generalized uncertainty principle and stochastic gravitational wave background spectrum.

Testing the Quantum Equivalence Principle with Gravitational Waves Generalized uncertainty principle and stochastic gravitational wave background spectrum

Reference 14

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This paper cites Gravitational wave in f(R) gravity: possible signature of sub- and super-Chandrasekhar limiting mass white dwarfs.

Testing the Quantum Equivalence Principle with Gravitational Waves Gravitational wave in f(R) gravity: possible signature of sub- and super-Chandrasekhar limiting mass white dwarfs

Reference 15

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Observation fef5a42f-e2cb-4f91-96e2-5e49864f5c09 · outbound

This paper cites Lambiase, M.

Testing the Quantum Equivalence Principle with Gravitational Waves Lambiase, M

Reference 16

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Testing the Quantum Equivalence Principle with Gravitational Waves Unresolved cited work

Reference 17

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Observation 52ebd77f-b54b-45e3-9f72-d48b9a645512 · outbound

This paper cites Quantum gravitational signatures in next-generation gravitational wave detectors.

Testing the Quantum Equivalence Principle with Gravitational Waves Quantum gravitational signatures in next-generation gravitational wave detectors

Reference 18

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This paper cites Gravitational Waves. Vol. 1: Theory and Experiments,.

Testing the Quantum Equivalence Principle with Gravitational Waves Gravitational Waves. Vol. 1: Theory and Experiments,

Reference 19

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Observation a709dca8-f7ec-4301-86ee-995666fe0442 · outbound

This paper cites Abbott et al, Phys.

Testing the Quantum Equivalence Principle with Gravitational Waves Abbott et al, Phys

Reference 20

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This paper cites Abbott et al, Phys.

Testing the Quantum Equivalence Principle with Gravitational Waves Abbott et al, Phys

Reference 21

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This paper cites Abbott et al, ApJL 896, L44 (2020).

Testing the Quantum Equivalence Principle with Gravitational Waves Abbott et al, ApJL 896, L44 (2020)

Reference 22

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This paper cites Central engine of GRB170817A: Neutron star versus Kerr black hole based on multimessenger calorimetry and event timing.

Testing the Quantum Equivalence Principle with Gravitational Waves Central engine of GRB170817A: Neutron star versus Kerr black hole based on multimessenger calorimetry and event timing

Reference 23

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Pith citing papers

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