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Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves

As of 16 August 2026, this Paper Citation Record lists 97 of 97 outbound references and 2 inbound Pith citation observations for arXiv:2506.17909.

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2506.17909 v1

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Pith citing papers itemized under the disclosed page cap.

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Outbound references

Observation 2ac3dfbe-cf00-4602-967a-2fff21afe0cf · outbound

This paper cites Einstein, Die Feldgleichungen der Gravitation , Sitzungsberichte der Königlich Preussischen Akademie der Wissenschaften (1915) 844.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Einstein, Die Feldgleichungen der Gravitation , Sitzungsberichte der Königlich Preussischen Akademie der Wissenschaften (1915) 844

Reference 1

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Observation 996fc976-9d20-4e65-82f7-a35837a62686 · outbound

This paper cites Holberg, Sirius B and the Measurement of the Gravitational Redshift , Journal for the History of Astronomy 41 (2010) 41.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Holberg, Sirius B and the Measurement of the Gravitational Redshift , Journal for the History of Astronomy 41 (2010) 41

Reference 2

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Observation 88f4468d-e749-4c5b-8f37-fa9e172c2dd0 · outbound

This paper cites Hulse and J.H.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Hulse and J.H

Reference 3

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Observation 4534fcf1-590f-41ee-b969-f1aa4dd06a3c · outbound

This paper cites Clark and D.M.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Clark and D.M

Reference 4

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Observation d593c43b-8f4f-4364-a394-959e2cfd680b · outbound

This paper cites Damour and N.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Damour and N

Reference 5

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Observation c1ea4b44-81d7-4467-ac90-1d4d1e6e38de · outbound

This paper cites Damour and N.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Damour and N

Reference 6

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Observation 74e7e254-d2df-4f6f-bb82-7b3fd9f5b6f9 · outbound

This paper cites The International Pulsar Timing Array: Second data release.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves The International Pulsar Timing Array: Second data release

Reference 7

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Observation af5ee59c-6128-4d8c-9815-1cf76bac7a37 · outbound

This paper cites Estimating the sensitivity of pulsar timing arrays.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Estimating the sensitivity of pulsar timing arrays

Reference 8

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Observation 87729f96-e191-4c99-a1f2-67a9b755cc1b · outbound

This paper cites Observation of Gravitational Waves from a Binary Black Hole Merger.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Observation of Gravitational Waves from a Binary Black Hole Merger

Reference 9

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Observation 3b5f75cc-bf45-4751-8286-f6e6ad1ea0ec · outbound

This paper cites GW151226: Observation of Gravitational Waves from a 22-Solar-Mass Binary Black Hole Coalescence.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves GW151226: Observation of Gravitational Waves from a 22-Solar-Mass Binary Black Hole Coalescence

Reference 10

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Observation 2e7dfac8-abee-4823-8be4-b29fdab4f979 · outbound

This paper cites GW170104: Observation of a 50-Solar-Mass Binary Black Hole Coalescence at Redshift 0.2.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves GW170104: Observation of a 50-Solar-Mass Binary Black Hole Coalescence at Redshift 0.2

Reference 11

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Observation 62c3abcd-eb7f-4d4e-a564-065bf37f2c46 · outbound

This paper cites GW170608: Observation of a 19-solar-mass Binary Black Hole Coalescence.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves GW170608: Observation of a 19-solar-mass Binary Black Hole Coalescence

Reference 12

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Observation 1ccb6f3d-5bae-44ad-b76e-c32aa61e58bf · outbound

This paper cites GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence

Reference 13

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Observation a2a438e5-4c01-449b-813e-fc98d819b32d · outbound

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

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral

Reference 14

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Observation 981fcab1-7bb3-40da-b184-0eab5856e068 · outbound

This paper cites The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background

Reference 15

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Observation 83ffaec8-9426-4281-9514-6697304302f1 · outbound

This paper cites All-sky search for continuous gravitational waves from isolated neutron stars using Advanced LIGO and Advanced Virgo O3 data.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves All-sky search for continuous gravitational waves from isolated neutron stars using Advanced LIGO and Advanced Virgo O3 data

Reference 16

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Observation b4cc803d-c049-4afb-ab1b-6987104a05ee · outbound

This paper cites Drop in the hard pulsed fraction and a candidate cyclotron line in IGR J16320-4751 seen by NuSTAR.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Drop in the hard pulsed fraction and a candidate cyclotron line in IGR J16320-4751 seen by NuSTAR

Reference 17

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Observation 51b913bb-99b1-466f-94b3-eafd3ded2878 · outbound

This paper cites Einstein's Discovery of Gravitational Waves 1916-1918.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Einstein's Discovery of Gravitational Waves 1916-1918

Reference 18

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Observation 848fe798-5d03-47cd-8902-f36934a7d54a · outbound

This paper cites Einstein, Die Grundlage der allgemeinen Relativit¨ atstheorie, Annalen der Physik 354 (1916) 769.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Einstein, Die Grundlage der allgemeinen Relativit¨ atstheorie, Annalen der Physik 354 (1916) 769

Reference 19

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Observation a646abda-9d71-4c18-b483-99021fca52fa · outbound

This paper cites Einstein, N¨ aherungsweise Integration der Feldgleichungen der Gravitation, Sitzungsberichte der Königlich Preussischen Akademie der Wissenschaf ten (1916) 688.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Einstein, N¨ aherungsweise Integration der Feldgleichungen der Gravitation, Sitzungsberichte der Königlich Preussischen Akademie der Wissenschaf ten (1916) 688

Reference 20

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Observation a7c75a58-99f5-42fb-9bd6-ad6f59da4492 · outbound

This paper cites Einstein, ¨Uber Gravitationswellen, Sitzungsberichte der Königlich Preussischen Akademie der Wissenschaften (1918) 154.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Einstein, ¨Uber Gravitationswellen, Sitzungsberichte der Königlich Preussischen Akademie der Wissenschaften (1918) 154

Reference 21

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This paper cites Eddington, The Propagation of Gravitational Waves , Proceedings of the Royal Society of London Series A 102 (1922) 268.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Eddington, The Propagation of Gravitational Waves , Proceedings of the Royal Society of London Series A 102 (1922) 268

Reference 22

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Observation 7a9e9d8a-ad8d-484f-a5d0-9cbd68ffa828 · outbound

This paper cites Eddington, The Mathematical Theory of Relativity , Cambridge University Press, Cambridge, England (1923).

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Eddington, The Mathematical Theory of Relativity , Cambridge University Press, Cambridge, England (1923)

Reference 23

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Observation ecdaee86-9005-4fba-8225-9f6961b64182 · outbound

This paper cites Gravitational waves from extreme mass ratio inspirals: Challenges in mapping the spacetime of massive, compact objects.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Gravitational waves from extreme mass ratio inspirals: Challenges in mapping the spacetime of massive, compact objects

Reference 24

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Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Tinto and S.V

Reference 25

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Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Unresolved cited work

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Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Science with the space-based interferometer LISA. V: Extreme mass-ratio inspirals

Reference 27

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Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Science with the TianQin observatory: Preliminary result on extreme-mass-ratio inspirals

Reference 28

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Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Laser Interferometer Space Antenna

Reference 29

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Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Detecting fundamental fields with LISA observations of gravitational waves from extreme mass-ratio inspirals

Reference 30

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Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves The construction and use of LISA sensitivity curves

Reference 31

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This paper cites Low-frequency gravitational-wave science with eLISA/NGO.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Low-frequency gravitational-wave science with eLISA/NGO

Reference 32

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Observation 198b6054-28ee-472b-a800-d128c909f1cd · outbound

This paper cites TianQin: a space-borne gravitational wave detector.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves TianQin: a space-borne gravitational wave detector

Reference 33

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Observation d3aca26e-c4d5-4e82-927c-a65cbff1822f · outbound

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Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Science with the TianQin observatory: Preliminary results on stellar-mass binary black holes

Reference 34

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Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves BBO and the Neutron-Star-Binary Subtraction Problem

Reference 35

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Observation 7e4a94f2-f60e-4c0a-aef2-1418fbc83140 · outbound

This paper cites Current status of space gravitational wave antenna DECIGO and B-DECIGO.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Current status of space gravitational wave antenna DECIGO and B-DECIGO

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Observation bc51cf6f-a895-4c8e-89bc-d1eceba1ba5f · outbound

This paper cites Ruan, Z.-K.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Ruan, Z.-K

Reference 37

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Observation c3abe599-0227-495a-9825-3b609d7cbb34 · outbound

This paper cites Extreme Mass Ratio Inspirals: LISA's unique probe of black hole gravity.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Extreme Mass Ratio Inspirals: LISA's unique probe of black hole gravity

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source=pdf_text observed=2026-08-15T19:07:26.583351Z digest=sha256:a88cb25a16c1f6dcf38a545b03cb4943ca1a369d357e57a531a239fd2149ffcc

Observation ad8dc6e8-0203-4224-bf49-5a2f3d42bd7b · outbound

This paper cites LISA Capture Sources: Approximate Waveforms, Signal-to-Noise Ratios, and Parameter Estimation Accuracy.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves LISA Capture Sources: Approximate Waveforms, Signal-to-Noise Ratios, and Parameter Estimation Accuracy

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source=pdf_text observed=2026-08-15T19:07:26.588068Z digest=sha256:1162f918f3feeb86fd0fc0bca9a258b5246162e130574f3e8ba8779edf159bb3

Observation ebe05ded-24c6-4bbc-ab7c-52339369274c · outbound

This paper cites "Kludge" gravitational waveforms for a test-body orbiting a Kerr black hole.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves "Kludge" gravitational waveforms for a test-body orbiting a Kerr black hole

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source=pdf_text observed=2026-08-15T19:07:26.592583Z digest=sha256:7fe339f2ebf04572a30ecc219c3a3988e33390d08fe1b919186d6946695f79aa

Observation 439f2d75-3200-4282-9c35-dae4188a2eae · outbound

This paper cites Improved analytic extreme-mass-ratio inspiral model for scoping out eLISA data analysis.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Improved analytic extreme-mass-ratio inspiral model for scoping out eLISA data analysis

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source=pdf_text observed=2026-08-15T19:07:26.597195Z digest=sha256:d8442854a13bc83c4e0a9916871c8fb0b3d43cd8f55efc30d371fc75e223c262

Observation d2230f87-5e2f-4e35-9505-d16ed6fe02e9 · outbound

This paper cites The Fast and the Fiducial: Augmented kludge waveforms for detecting extreme-mass-ratio inspirals.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves The Fast and the Fiducial: Augmented kludge waveforms for detecting extreme-mass-ratio inspirals

Reference 42

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source=pdf_text observed=2026-08-15T19:07:26.601459Z digest=sha256:11926a401cfe5bcb2fa990dc284893f6c72881834c34682c7658a0a229230274

Observation 540b72b3-5318-4ed1-b30c-eff62430eb81 · outbound

This paper cites Prospects for determining the nature of the secondaries of extreme mass-ratio inspirals using the spin-induced quadrupole deformation.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Prospects for determining the nature of the secondaries of extreme mass-ratio inspirals using the spin-induced quadrupole deformation

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source=pdf_text observed=2026-08-15T19:07:26.605223Z digest=sha256:2f5c20243e1bf47e460fda84dcdbbad1199b94d5000c17adb3adbad2ecbd2962

Observation 7faa2799-e2eb-4f19-9916-313f452a1d63 · outbound

This paper cites Probing astrophysical environment with eccentric extreme mass-ratio inspirals.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Probing astrophysical environment with eccentric extreme mass-ratio inspirals

Reference 44

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no resolver link, observed 2026-08-15T19:07:26.609527Z

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source=pdf_text observed=2026-08-15T19:07:26.609527Z digest=sha256:acbc98cd45be90028f24a0d3c053acf69687b6d15d1e0bff80ec6fe3f1227b26

Observation a59a31c9-7dd6-402c-9815-a242aa4ab72a · outbound

This paper cites Fast and Fourier: Extreme Mass Ratio Inspiral Waveforms in the Frequency Domain.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Fast and Fourier: Extreme Mass Ratio Inspiral Waveforms in the Frequency Domain

Reference 45

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source=pdf_text observed=2026-08-15T19:07:26.613058Z digest=sha256:2a61508d43b0ad8f2458c61b4cec6356004014a2ca45fa3485685cc8c6e072a0

Observation 03332d30-ced7-4274-9fc3-6ae5073908e5 · outbound

This paper cites Analytic Kludge Waveforms for Extreme Mass Ratio Inspirals of Charged Object around Kerr-Newman Black Hole.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Analytic Kludge Waveforms for Extreme Mass Ratio Inspirals of Charged Object around Kerr-Newman Black Hole

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source=pdf_text observed=2026-08-15T19:07:26.616978Z digest=sha256:0b8c9bbe855ed4e52df7467b3e8e2e79a8339687ad4f327e1ebb527ffe6bb5b1

Observation 5c64a56e-48f5-458d-bb60-d39e7ba11b58 · outbound

This paper cites Probing the Tidal Deformability of the Central Object in an Extreme Mass Ratio Inspiral with Analytic Kludge Waveforms.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Probing the Tidal Deformability of the Central Object in an Extreme Mass Ratio Inspiral with Analytic Kludge Waveforms

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source=pdf_text observed=2026-08-15T19:07:26.621418Z digest=sha256:108aa9c3c96f8961d3dd1513c902cc4cbf34944e8120c3b080de21e2bdf0a22b

Observation db3d927a-a2c5-45ef-afcf-adb6658ab065 · outbound

This paper cites FastEMRIWaveforms: New tools for millihertz gravitational-wave data analysis.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves FastEMRIWaveforms: New tools for millihertz gravitational-wave data analysis

Reference 48

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source=pdf_text observed=2026-08-15T19:07:26.625986Z digest=sha256:2f7e0ea1c5d9192400e83694bd6474c58a138d3387b5067d561db796bb7062e8

Observation b39ce77c-ebc3-456a-9c9a-bf037f12cd47 · outbound

This paper cites Gravitational waveforms from periodic orbits around a quantum-corrected black hole.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Gravitational waveforms from periodic orbits around a quantum-corrected black hole

Reference 49

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source=pdf_text observed=2026-08-15T19:07:26.629979Z digest=sha256:1685576a69399f109f8413e5f620e6c17794e7ae923eccaf7f3623bcc4b03153

Observation c324d762-d5ba-4381-96c1-0e46183e26fd · outbound

This paper cites Towards adiabatic waveforms for inspiral into Kerr black holes: I. A new model of the source for the time domain perturbation equation.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Towards adiabatic waveforms for inspiral into Kerr black holes: I. A new model of the source for the time domain perturbation equation

Reference 50

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source=pdf_text observed=2026-08-15T19:07:26.634870Z digest=sha256:d3130d767f039e25cc1f6b04e1812f9594469656d81a0f92a429def5006ac941

Observation 4463634e-7938-4a92-bbf0-a1f26e414513 · outbound

This paper cites Towards adiabatic waveforms for inspiral into Kerr black holes: II. Dynamical sources and generic orbits.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Towards adiabatic waveforms for inspiral into Kerr black holes: II. Dynamical sources and generic orbits

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source=pdf_text observed=2026-08-15T19:07:26.638928Z digest=sha256:d530f2f488a7e222e879310341181fada74525770254354a6ccb4503c23b1a86

Observation 78c0b2b1-4cfa-4e5e-8a59-250b6534c050 · outbound

This paper cites The evolution of circular, non-equatorial orbits of Kerr black holes due to gravitational-wave emission.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves The evolution of circular, non-equatorial orbits of Kerr black holes due to gravitational-wave emission

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source=pdf_text observed=2026-08-15T19:07:26.642631Z digest=sha256:73847b910772fd62a7d9711a6f063fb3f1526106a8d13d08618054797d47669f

Observation 08b4489e-0bbe-46a1-b890-4a4095dff7e6 · outbound

This paper cites Gravitational wave snapshots of generic extreme mass ratio inspirals.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Gravitational wave snapshots of generic extreme mass ratio inspirals

Reference 53

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no resolver link, observed 2026-08-15T19:07:26.646676Z

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source=pdf_text observed=2026-08-15T19:07:26.646676Z digest=sha256:2e8d4784a057a76c64abc788a9945f7525062a1ff76706c8883225beafc5a9a8

Observation 1a222451-70db-4a56-b95b-94dcbab5d258 · outbound

This paper cites Gravitational radiation from a particle in circular orbit around a black hole. V. Black-hole absorption and tail corrections.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Gravitational radiation from a particle in circular orbit around a black hole. V. Black-hole absorption and tail corrections

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source=pdf_text observed=2026-08-15T19:07:26.650827Z digest=sha256:7a5335d006ab64262276460899cd24cfb94caa7f3d3021b028988bfb02665ad5

Observation 493a4892-a208-4166-be12-082cf6bd82ff · outbound

This paper cites Intermediate and Extreme Mass-Ratio Inspirals -- Astrophysics, Science Applications and Detection using LISA.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Intermediate and Extreme Mass-Ratio Inspirals -- Astrophysics, Science Applications and Detection using LISA

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source=pdf_text observed=2026-08-15T19:07:26.655262Z digest=sha256:3a55946209208acea98c3d3cebcff63a260239b0628306ec003337f22620f889

Observation 138db6c3-a14c-40f1-b82b-b7969a0f394b · outbound

This paper cites Detecting extreme mass ratio inspiral events in LISA data using the Hierarchical Algorithm for Clusters and Ridges (HACR).

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Detecting extreme mass ratio inspiral events in LISA data using the Hierarchical Algorithm for Clusters and Ridges (HACR)

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source=pdf_text observed=2026-08-15T19:07:26.659503Z digest=sha256:3b22afd2f098a8ca6e1c67388e2af45f8ea6c1d4b10c469efeb67bf34c863d19

Observation 7d129d42-6251-419a-9b3e-d3bdb51843ed · outbound

This paper cites Improved time-frequency analysis of extreme-mass-ratio inspiral signals in mock LISA data.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Improved time-frequency analysis of extreme-mass-ratio inspiral signals in mock LISA data

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source=pdf_text observed=2026-08-15T19:07:26.663449Z digest=sha256:d570355fb6d70690ee447c8b8a19edcbb8b30e70f63a80f7a678f104791fe5aa

Observation 50da09d1-4283-45e9-bac9-99259c35e2c4 · outbound

This paper cites Peters, Gravitational Radiation and the Motion of Two Point Masses , Physical Review 136 (1964) 1224.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Peters, Gravitational Radiation and the Motion of Two Point Masses , Physical Review 136 (1964) 1224

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source=pdf_text observed=2026-08-15T19:07:26.667603Z digest=sha256:da64230865eb8695a0408dd89e5c92914f0d87ce79d899eb87cbd0d63b22a122

Observation c09aaffa-018f-43bf-9561-7dfc8cb161f1 · outbound

This paper cites Junker and G.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Junker and G

Reference 59

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source=pdf_text observed=2026-08-15T19:07:26.671131Z digest=sha256:701df42b4d3ac98d2dde80cd8016656fc4fd4856fe4cfdaeb08687db3d89b670

Observation d61933c9-97e9-47b0-a0f1-24d9c488b865 · outbound

This paper cites Eccentric-orbit EMRI gravitational wave energy fluxes to 7PN order.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Eccentric-orbit EMRI gravitational wave energy fluxes to 7PN order

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source=pdf_text observed=2026-08-15T19:07:26.674856Z digest=sha256:049d67996922ff802ee1344f9397f1f04ebb8b18b1ebb0476c9e6a690d71d1a4

Observation f940fea9-e546-443a-962a-2703e112d4ed · outbound

This paper cites Gravitational waves from inspiralling compact binaries: Angular momentum flux, evolution of the orbital elements and the wave form to the second post-Newtonian order.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Gravitational waves from inspiralling compact binaries: Angular momentum flux, evolution of the orbital elements and the wave form to the second post-Newtonian order

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source=pdf_text observed=2026-08-15T19:07:26.679303Z digest=sha256:364dd6ad54db12887b7df48eaa4da4667a5dba441d5fff159bc59aecf4faf202

Observation cd1925a5-1550-4bfe-bae8-b307ca0d1aad · outbound

This paper cites Gopakumar, B.R.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Gopakumar, B.R

Reference 62

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source=pdf_text observed=2026-08-15T19:07:26.683517Z digest=sha256:e592ebf086ad06c9c2a3456544a2c56c5d6502843ded7e7f160bcd84a783ac56

Observation 824d2da4-d909-4787-8463-786133d970ed · outbound

This paper cites Dynamical Horizons: Energy, Angular Momentum, Fluxes and Balance Laws.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Dynamical Horizons: Energy, Angular Momentum, Fluxes and Balance Laws

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source=pdf_text observed=2026-08-15T19:07:26.687387Z digest=sha256:43da200d2eb8ba048b11e49f5bb5c738b4e2f0ec83249f48c10d9eefcea516c2

Observation 1c710967-3d8e-4ae0-a5e9-aa33c6ea2e64 · outbound

This paper cites Hasselmann, On the non-linear energy transfer in a gravity-wave spectru m.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Hasselmann, On the non-linear energy transfer in a gravity-wave spectru m

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verified fuzzy
raw_fallback, observed 2026-08-15T19:07:27.727349Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.

source=pdf_text observed=2026-08-15T19:07:26.692148Z digest=sha256:fa34b4828ca80ed46dce68c47d4a093889eeb3cc2ed4761767f96d944af8c3b9

Observation 8e4e6de7-1c76-432e-bd22-9b3ffe837970 · outbound

This paper cites Maggiore, Gravitational Waves: Volume 1: Theory and Experiments (2007), 10.1093/acprof:oso/9780198570745.001.0001.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Maggiore, Gravitational Waves: Volume 1: Theory and Experiments (2007), 10.1093/acprof:oso/9780198570745.001.0001

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source=pdf_text observed=2026-08-15T19:07:26.696635Z digest=sha256:2aacd1377dad37bd6f002720ab07a9f413eae316e70aac3b7ca8abf6d0fe5a90

Observation 465572f1-ab4e-4b79-bc26-24dde1f15df0 · outbound

This paper cites Poisson, BOOK REVIEW: Gravitational Waves, Volume 1: Theory and Expe riments, Classical and Quantum Gravity 25 (2008) 209002.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Poisson, BOOK REVIEW: Gravitational Waves, Volume 1: Theory and Expe riments, Classical and Quantum Gravity 25 (2008) 209002

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No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.

source=pdf_text observed=2026-08-15T19:07:26.700435Z digest=sha256:8de4c0ba1c746e179693758ae73801a30b5f1851c7da15eee64eeec544694140

Observation 95e73a19-0069-4791-ae8d-bae5bf2b691d · outbound

This paper cites Thorne, Multipole expansions of gravitational radiation , Rev.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Thorne, Multipole expansions of gravitational radiation , Rev

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Resolution
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raw_fallback, observed 2026-08-15T19:07:27.704885Z

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No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.

source=pdf_text observed=2026-08-15T19:07:26.703913Z digest=sha256:c777cdfc2460accc3cfe82b5f1578e40a2708cc481c54705e33f830ee474436a

Observation a2010b2b-4048-4369-9fbf-4e3654d1e521 · outbound

This paper cites Gravitational waves from inspiralling compact binaries: Energy flux to third post-Newtonian order.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Gravitational waves from inspiralling compact binaries: Energy flux to third post-Newtonian order

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source=pdf_text observed=2026-08-15T19:07:26.707502Z digest=sha256:93ddc7237711b6fab1ceb034d0b7638d2d9f404448d1e392e54afca892d6414d

Observation ccbf3e7e-99d7-4118-9d6e-76ad8479771b · outbound

This paper cites Blanchet, B.R.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Blanchet, B.R

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Resolution
verified fuzzy
raw_fallback, observed 2026-08-15T19:07:27.693529Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.

source=pdf_text observed=2026-08-15T19:07:26.711268Z digest=sha256:965bac952f62bdc2499b1a7a3a1dbc4ed800eab4a7a010662fdfd5e61d74f7f7

Observation 7a67e562-a05a-46bd-9654-826883c02ccb · outbound

This paper cites High-accuracy numerical simulation of black-hole binaries: Computation of the gravitational-wave energy flux and comparisons with post-Newtonian approximants.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves High-accuracy numerical simulation of black-hole binaries: Computation of the gravitational-wave energy flux and comparisons with post-Newtonian approximants

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source=pdf_text observed=2026-08-15T19:07:26.714717Z digest=sha256:a1f4d6cce6b5a60763db64b5cdcbb08c314d8186b81c8cfa880e975d58769c3a

Observation c73febcb-0d57-4559-9aef-7c3cd24f77d5 · outbound

This paper cites Sensitivity curves for searches for gravitational-wave backgrounds.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Sensitivity curves for searches for gravitational-wave backgrounds

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Observation fd9cc7c2-561e-41ba-b56f-76b8b5494034 · outbound

This paper cites Torres and N.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Torres and N

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Observation edc74806-12c2-422e-b5dc-cad519b19749 · outbound

This paper cites Gravitational-wave sensitivity curves.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Gravitational-wave sensitivity curves

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source=pdf_text observed=2026-08-15T19:07:26.726547Z digest=sha256:dc58ff010a86d395347a44abfd1b20ca8f86386815adb67549a06a8d340c87a6

Observation 5a9613f8-f077-44db-9270-ec92c7285160 · outbound

This paper cites The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals

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source=pdf_text observed=2026-08-15T19:07:26.729973Z digest=sha256:9ea0ffb18e7305b5046562eb84fbb5946395fdaa6e1ccac69d97a6c50b289d67

Observation b896bf8f-35e8-4521-abc1-ed3912a94b94 · outbound

This paper cites The international pulsar timing array project: using pulsars as a gravitational wave detector.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves The international pulsar timing array project: using pulsars as a gravitational wave detector

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source=pdf_text observed=2026-08-15T19:07:26.733403Z digest=sha256:2d6173f8cc2cf81a5123d30ce7d05b23f8cae5ad9980a076334c3cb011c34128

Observation d7155587-a863-4162-9f6d-86879880f8ae · outbound

This paper cites Braun, T.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Braun, T

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Observation f1f5abf0-8b54-47f9-a3d5-2e7748b1655e · outbound

This paper cites Exploring the Sensitivity of Next Generation Gravitational Wave Detectors.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Exploring the Sensitivity of Next Generation Gravitational Wave Detectors

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Observation 8d321cbc-b0b3-486c-bf54-e4e1b03b4289 · outbound

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

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run

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Observation d3db0d56-21f4-4946-b3f2-dd9ffe2f3dff · outbound

This paper cites Tso and the LIGO A+ Collaboration, The A+ upgrade: Improving low-frequency sensitivity in Advanced LIGO , Classical and Quantum Gravity 39 (2022) 155001.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Tso and the LIGO A+ Collaboration, The A+ upgrade: Improving low-frequency sensitivity in Advanced LIGO , Classical and Quantum Gravity 39 (2022) 155001

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Observation 4c2279c0-d650-47b5-abb5-db95b786da14 · outbound

This paper cites Renormalization group improved black hole spacetimes.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Renormalization group improved black hole spacetimes

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Observation 6b3855e3-7bcc-473e-a71c-b7a3d7cdbef8 · outbound

This paper cites Planck Stars from a Scale-dependent Gravity theory.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Planck Stars from a Scale-dependent Gravity theory

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Observation 7aa59a23-2ce7-4672-886e-49e0ee2b6ff6 · outbound

This paper cites Cosmology of the Planck Era from a Renormalization Group for Quantum Gravity.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Cosmology of the Planck Era from a Renormalization Group for Quantum Gravity

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Observation f1622c85-50d9-40d9-858c-7150e548405b · outbound

This paper cites Huang and X.-M.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Huang and X.-M

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Observation 63f6ea29-39eb-4b41-8b11-2763140b2ab9 · outbound

This paper cites Generalized uncertainty principle and Asymptotic Safe gravity.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Generalized uncertainty principle and Asymptotic Safe gravity

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Observation 3e1cb335-d868-4421-bdbd-b0412afde3b2 · outbound

This paper cites Analytical solutions of bound timelike geodesic orbits in Kerr spacetime.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Analytical solutions of bound timelike geodesic orbits in Kerr spacetime

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Observation d8e3c0a0-cc41-4f86-b4dd-f035963e5a0f · outbound

This paper cites Newton, Philosophiae Naturalis Principia Mathematica.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Newton, Philosophiae Naturalis Principia Mathematica

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Observation 6ae8ed4f-e4b2-4b7a-89b2-c54d593c751a · outbound

This paper cites Brouwer and G.M.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Brouwer and G.M

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Observation f9f29ab3-1ca0-4108-8871-1d9b66b304e6 · outbound

This paper cites Laskar, A numerical experiment on the chaotic behaviour of the Solar System, Natur.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Laskar, A numerical experiment on the chaotic behaviour of the Solar System, Natur

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Observation 955aa73a-3b19-4f06-b233-5b3bb6e73d99 · outbound

This paper cites Mayor and D.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Mayor and D

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Observation ec9d691c-2b75-4360-bb27-c3cdc3f22ebb · outbound

This paper cites Gravitational waves for eccentric extreme mass ratio inspirals of self-dual spacetime.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Gravitational waves for eccentric extreme mass ratio inspirals of self-dual spacetime

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Observation 7d98af7c-14ba-486d-8309-0e524f5716f5 · outbound

This paper cites Huang, Probing holonomy corrected Schwarzschild black holes with precessing and periodic orbits, Phys.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Huang, Probing holonomy corrected Schwarzschild black holes with precessing and periodic orbits, Phys

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Observation f66a8b7c-5a53-4f7d-9737-f2a7f61a3b9a · outbound

This paper cites Lin and X.-M.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Lin and X.-M

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Observation 57952849-3df4-4c44-ae5b-2e4d5b83eeb4 · outbound

This paper cites Lin and X.-M.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Lin and X.-M

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Observation 6d2726ed-6111-4288-a3cc-bc00ffc61d97 · outbound

This paper cites A Periodic Table for Black Hole Orbits.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves A Periodic Table for Black Hole Orbits

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Observation aea57d18-f26a-4550-9df0-8bdeb6ef4c26 · outbound

This paper cites Dynamics of Black Hole Pairs I: Periodic Tables.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Dynamics of Black Hole Pairs I: Periodic Tables

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Observation eaa5c942-7495-415d-a56c-a14f4658788d · outbound

This paper cites Poisson and C.M.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Poisson and C.M

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Observation 82bc2aa9-a0d2-4abb-ab89-3620d639d93e · outbound

This paper cites Gravitational Waves from a Compact Star in a Circular, Inspiral Orbit, in the Equatorial Plane of a Massive, Spinning Black Hole, as Observed by LISA.

Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves Gravitational Waves from a Compact Star in a Circular, Inspiral Orbit, in the Equatorial Plane of a Massive, Spinning Black Hole, as Observed by LISA

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Pith citing papers

Observation 5df14807-7556-477f-a3da-97afe143a372 · inbound

Rational Orbits and Gravitational Waves in Static Spherical Spacetimes: An Open-Source Numerical Framework cites this paper.

Rational Orbits and Gravitational Waves in Static Spherical Spacetimes: An Open-Source Numerical Framework Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves

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Observation 9fe3be71-0080-4180-8a7f-210b9ffdf94c · inbound

Rational Orbits and Gravitational Waves in Static Spherical Spacetimes: An Open-Source Numerical Framework cites this paper.

Rational Orbits and Gravitational Waves in Static Spherical Spacetimes: An Open-Source Numerical Framework Distinguishing scale-dependent Planck stars from renormalization group improved Schwarzschild black holes by Gravitational waves

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