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Paper Citation Record · LEDGER

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter

As of 22 August 2026, this Paper Citation Record lists 60 of 60 outbound references and 0 inbound Pith citation observations for arXiv:2607.10521.

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

pith.paper-citation-record.v1
2607.10521 v1

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measured 60 of 60 reference resolution

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Outbound references

Observation c3b5535a-c3f1-448a-b560-5d46b1ba1cd1 · outbound

This paper cites Is dark matter a BEC or scalar field?.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Is dark matter a BEC or scalar field?

Reference 1

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Observation 0dc3dd0c-85e4-4aa8-ac91-a0b3617ea3d8 · outbound

This paper cites A Review on the Scalar Field/ Bose-Einstein Condensate Dark Matter Model.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter A Review on the Scalar Field/ Bose-Einstein Condensate Dark Matter Model

Reference 2

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Observation c2663950-f43f-4049-9ba6-fde51a156bf8 · outbound

This paper cites Complex scalar field dark matter on galactic scales.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Complex scalar field dark matter on galactic scales

Reference 3

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Observation 807c7bf8-1d2d-4f25-a071-0ebebf42da00 · outbound

This paper cites Mass-radius relation of Newtonian self-gravitating Bose-Einstein condensates with short-range interactions: I. Analytical results.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Mass-radius relation of Newtonian self-gravitating Bose-Einstein condensates with short-range interactions: I. Analytical results

Reference 4

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Observation 778c35dd-ae2d-4d1d-9432-e868e5c15d37 · outbound

This paper cites Axion Cosmology.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Axion Cosmology

Reference 5

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Observation f27e5e18-b3c3-4aab-887c-d49fe37c91eb · outbound

This paper cites Ultralight scalars as cosmological dark matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Ultralight scalars as cosmological dark matter

Reference 6

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Observation baf2cd1c-27ba-43d7-8850-2a4acaef608f · outbound

This paper cites an unresolved cited work.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Unresolved cited work

Reference 7

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Observation d883c780-fa8e-4d9c-880c-9b7f7e149168 · outbound

This paper cites Late time Cosmological Phase Transition and Galactic Halo as Bose-liquid.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Late time Cosmological Phase Transition and Galactic Halo as Bose-liquid

Reference 8

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Observation 222c3055-2f7d-407d-8cbb-27e77dd03470 · outbound

This paper cites Galactic Halos As Boson Stars.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Galactic Halos As Boson Stars

Reference 9

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Observation 7e5c8cfe-2eef-4992-b451-d459731f9f9c · outbound

This paper cites an unresolved cited work.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Unresolved cited work

Reference 10

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Observation d53f062d-a57a-4a49-810d-d810edb3b6e7 · outbound

This paper cites Nonminimal global monopoles and bound orbits.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Nonminimal global monopoles and bound orbits

Reference 11

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Observation cadd40de-0fbd-4763-a8cd-44e4fdc6cd80 · outbound

This paper cites Quintessential Haloes around Galaxies.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Quintessential Haloes around Galaxies

Reference 12

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Observation 83997c4f-dbfd-476c-9993-ecd20c002bfd · outbound

This paper cites Cold and Fuzzy Dark Matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Cold and Fuzzy Dark Matter

Reference 13

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Observation 5bb0c707-830b-48fc-8d7a-ce9157ba5b56 · outbound

This paper cites Fluid Dark Matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Fluid Dark Matter

Reference 14

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Observation 755eb733-3ff6-439e-9298-17de6c509aee · outbound

This paper cites an unresolved cited work.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Unresolved cited work

Reference 15

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Observation 3d16e285-d95d-4268-b5a3-919a0aeae9dc · outbound

This paper cites A New Cosmological Model of Quintessence and Dark Matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter A New Cosmological Model of Quintessence and Dark Matter

Reference 16

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Observation 025572a4-5ad4-42eb-aab6-aaedf93bcf41 · outbound

This paper cites Galactic Collapse of Scalar Field Dark Matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Galactic Collapse of Scalar Field Dark Matter

Reference 17

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Observation 85ee8717-ac23-4a23-a201-ae94d898fe5b · outbound

This paper cites Axion as a cold dark matter candidate: low-mass case.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Axion as a cold dark matter candidate: low-mass case

Reference 18

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Observation b3b24c57-7a76-4d7c-a3da-56efd848a970 · outbound

This paper cites Bose-Einstein Condensation of Dark Matter Axions.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Bose-Einstein Condensation of Dark Matter Axions

Reference 19

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Observation 9a24785a-cd46-43af-8513-eeabcd30a756 · outbound

This paper cites Scaling behaviour of a scalar field model of dark matter halos.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Scaling behaviour of a scalar field model of dark matter halos

Reference 20

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Observation 3294935b-1b64-409d-a0e1-214c1809e5de · outbound

This paper cites Scalar Field Dark Matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Scalar Field Dark Matter

Reference 21

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Observation 84ac2c64-90e9-49c3-b885-e71043022947 · outbound

This paper cites An alternative approach to the galactic dark matter problem.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter An alternative approach to the galactic dark matter problem

Reference 22

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Observation fa248a6d-2214-4d84-b1d8-0bd8e641d22f · outbound

This paper cites Can dark matter be a Bose-Einstein condensate?.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Can dark matter be a Bose-Einstein condensate?

Reference 23

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Observation a2bf3f62-3a60-4eba-9755-28d8bb2ed5ed · outbound

This paper cites Boson Stars from Self-Interacting Dark Matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Boson Stars from Self-Interacting Dark Matter

Reference 24

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Observation 9d8b7bee-9110-4d64-8e6c-fbc5c3d8abb4 · outbound

This paper cites Are galaxies extending?.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Are galaxies extending?

Reference 25

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Observation 33c32c6d-d909-460b-b9b1-0e3f09516c7f · outbound

This paper cites A high stellar velocity dispersion for a compact massive galaxy at z=2.2.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter A high stellar velocity dispersion for a compact massive galaxy at z=2.2

Reference 26

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Observation 01c7f647-7524-4edc-b169-f95836f2e6ae · outbound

This paper cites Analyzing Planar Galactic Halo Distributions with Fuzzy/Cold Dark Matter Models.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Analyzing Planar Galactic Halo Distributions with Fuzzy/Cold Dark Matter Models

Reference 27

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Observation 2241c7a9-b90f-4685-9b04-c4083c421941 · outbound

This paper cites The Distribution of Dark Matter in Galaxies: a Constant-Density Halo around DDO 47.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter The Distribution of Dark Matter in Galaxies: a Constant-Density Halo around DDO 47

Reference 28

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Observation 834a85cc-3920-4d70-9a2d-617b2bc714dd · outbound

This paper cites The Structure of Cold Dark Matter Halos.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter The Structure of Cold Dark Matter Halos

Reference 29

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Observation c13f0bd8-5ec9-433e-9902-1057638d7deb · outbound

This paper cites Simulating Observations of Dark Matter Dominated Galaxies: Towards the Optimal Halo Profile.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Simulating Observations of Dark Matter Dominated Galaxies: Towards the Optimal Halo Profile

Reference 30

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Observation 8b820645-1955-4a33-bea5-d250434c5322 · outbound

This paper cites The Cold Dark Matter crisis on galactic and subgalactic scales.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter The Cold Dark Matter crisis on galactic and subgalactic scales

Reference 31

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Observation 7ce13f31-b377-465e-8904-877f359dfd88 · outbound

This paper cites The M-sigma Relation of Super Massive Black Holes from the Scalar Field Dark Matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter The M-sigma Relation of Super Massive Black Holes from the Scalar Field Dark Matter

Reference 32

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Observation 578f0064-8daf-4cd6-bc21-80d16227321a · outbound

This paper cites an unresolved cited work.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Unresolved cited work

Reference 33

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Observation 43bb1f53-06fb-406c-91df-124311033d9a · outbound

This paper cites an unresolved cited work.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Unresolved cited work

Reference 34

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Observation b6b84071-e53d-4512-9560-3fabf768b141 · outbound

This paper cites Quantum Scales of Galaxies from Ultralight Dark Matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Quantum Scales of Galaxies from Ultralight Dark Matter

Reference 35

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Observation 57e226ce-29e9-480b-89f9-d3a0d026d254 · outbound

This paper cites First constraints on fuzzy dark matter from Lyman-$\alpha$ forest data and hydrodynamical simulations.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter First constraints on fuzzy dark matter from Lyman-$\alpha$ forest data and hydrodynamical simulations

Reference 36

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Observation a51f7645-e7c4-4ac0-8025-30a95debd45c · outbound

This paper cites Constraining the mass of light bosonic dark matter using SDSS Lyman-$\alpha$ forest.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Constraining the mass of light bosonic dark matter using SDSS Lyman-$\alpha$ forest

Reference 37

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Observation 17bbdb73-23dc-4d2f-95a9-36df5c109685 · outbound

This paper cites Dwarf galaxies imply dark matter is heavier than $\mathbf{2.2 \times 10^{-21}} \, \mathbf{eV}$.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Dwarf galaxies imply dark matter is heavier than $\mathbf{2.2 \times 10^{-21}} \, \mathbf{eV}$

Reference 39

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Observation a335050b-4153-4d27-befa-936d41af23eb · outbound

This paper cites Chavanis, Physical Review D84, 043531 (2011).

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Chavanis, Physical Review D84, 043531 (2011)

Reference 40

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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:93b87f0e8cec6c40349b2741c1fe13c63f3d9f3ae01ef36d0f375c0821225fac

Observation 5cd90bfd-1c53-4f11-8fdf-2338002d0435 · outbound

This paper cites Self-interactions of ULDM to the rescue?.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Self-interactions of ULDM to the rescue?

Reference 41

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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:04c6066e1a233f7dfd4ab95edd71af8134faccc9a99ccdeed7a1753f89877f96

Observation cc5413d8-2e58-4c68-9818-e4b2e9c77148 · outbound

This paper cites Constraints on self-interacting Bose-Einstein condensate dark matter using large-scale observables.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Constraints on self-interacting Bose-Einstein condensate dark matter using large-scale observables

Reference 42

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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:5b1d3aa2aff020b86531c8000e26ff9758d358dca4de8c526d22bb69fdb5d6db

Observation 409b97da-2b75-41dd-b648-cd1f0e5f0584 · outbound

This paper cites Cosmological structure formation in scalar field dark matter with repulsive self-interaction: The Incredible Shrinking Jeans Mass.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Cosmological structure formation in scalar field dark matter with repulsive self-interaction: The Incredible Shrinking Jeans Mass

Reference 43

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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:c9db078d737e8ef7ccf40b54884e3c428eb18989ee18cc20f3efa589f13444b8

Observation 5501de8d-3f9c-40a5-9911-cfcbf721d8f8 · outbound

This paper cites A solution to the Hubble tension with self-interacting ultralight dark matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter A solution to the Hubble tension with self-interacting ultralight dark matter

Reference 44

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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:70af1d27d3f3c9333b1a8c7d4e48774af69e9a55355d1f6bc7d9eb295eb55658

Observation 657c75fc-32d3-4d61-9a6d-5a178c5f55a3 · outbound

This paper cites Neutrino mass and ultralight dark matter mass from the Higgs mechanism.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Neutrino mass and ultralight dark matter mass from the Higgs mechanism

Reference 45

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:7b1c22d4ea7067c36ae496dc8dfbff9a1a623c3e337bb31930fe4c73453becd6

Observation b9432721-65fa-49fd-8e82-2f3bc1bcf4e3 · outbound

This paper cites Searching for dilaton dark matter with atomic clocks.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Searching for dilaton dark matter with atomic clocks

Reference 46

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:a2616f4378d275fab5a1f5cd235364b7daf2bbebe955b0ed19a715a53a68edc6

Observation 23e528c0-8fb2-44da-b20b-f6d364ce13a4 · outbound

This paper cites Ultra-light dark matter explanation of NANOGrav observations.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Ultra-light dark matter explanation of NANOGrav observations

Reference 47

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:f12194d86c98fccf2d8ec87739417b5e3e97395e5669c16437ea633c3858c8ee

Observation cec22157-5a2b-45cc-8f12-e0d500de8368 · outbound

This paper cites Cosmological Constraints on Bose-Einstein-Condensed Scalar Field Dark Matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Cosmological Constraints on Bose-Einstein-Condensed Scalar Field Dark Matter

Reference 48

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:e9ed7de5cd03552299f0ca3cfe8d7fa36fc0dd5488039278e00be81e85ee4b6c

Observation 81eb4084-67a3-4271-9630-03f3df6125bf · outbound

This paper cites an unresolved cited work.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Unresolved cited work

Reference 49

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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:401f2560b158f1127d55741c54703677160ce43a4e49e813a22f6b17697e70ce

Observation 2c5ff734-e314-40a8-9831-53db4ee77299 · outbound

This paper cites Subsonic accretion and dynamical friction for a black hole moving through a self-interacting scalar dark matter cloud.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Subsonic accretion and dynamical friction for a black hole moving through a self-interacting scalar dark matter cloud

Reference 50

Resolution
unresolved
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:a3b02956342b89ced0d24cf56dbf3608663ac9991890b69df76dee0670507d42

Observation 0c8b3c00-bcbe-480a-a800-f43086cdbaaa · outbound

This paper cites Probing Physics Beyond the Standard Model: Limits from BBN and the CMB Independently and Combined.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Probing Physics Beyond the Standard Model: Limits from BBN and the CMB Independently and Combined

Reference 51

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:73615f57ead36c5319b7bf8f94e0c291540de5dbdded6c5b515ebcddc773e3cc

Observation fa07c098-2afa-4e08-9263-3021480d291c · outbound

This paper cites an unresolved cited work.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Unresolved cited work

Reference 52

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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:c8449508e3740156c9c7a6782beab500bc21b87e54ed907153f9963b348e2e70

Observation bc7e8d46-a569-4ca4-b639-d3b2aa99f85f · outbound

This paper cites Diez-Tejedor, A.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Diez-Tejedor, A

Reference 53

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:f69e3c0a645916acaa86a9065904c335611b7ee50327c1ae8b1317dbc2c68b5b

Observation 425f4d7c-6a9b-4600-9758-7e4e6198efa1 · outbound

This paper cites Koo and J.-W.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Koo and J.-W

Reference 54

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:e1007376dfa3944071c231e6b21006321f64897e7888cc5b8dfa61f20b39b689

Observation 817733d6-be1a-4863-9fb4-482a9940b8b2 · outbound

This paper cites Dark Matter Self-interactions and Small Scale Structure.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Dark Matter Self-interactions and Small Scale Structure

Reference 55

Resolution
unresolved
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:d73bb5f073b5812f4028190e4c30e0c2386f82916651912618a428a535e300d4

Observation 83bb83fb-ffac-46da-8835-dbfc8cfd3b6c · outbound

This paper cites Solitons and halos for self-interacting scalar dark matter.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Solitons and halos for self-interacting scalar dark matter

Reference 56

Resolution
unresolved
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:061b2e04eb987b118c2eb2d7205259e51575add6f098c26dbc3ec9811cffc78c

Observation edc7aa93-8779-4ed1-9bb1-ae85013dc12e · outbound

This paper cites Coleman and E.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Coleman and E

Reference 57

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:1529c23e7f930f47ffc938a9dfd4f4358a147bc95a74d1f231e3ea104e86aff0

Observation 4205d640-6596-428f-879a-9ef1b6161e9f · outbound

This paper cites Baym, Phys.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Baym, Phys

Reference 58

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:c4c7ec0dfcf93dbc42e0dc32998f633042a072025e34a03888c7c6e754580227

Observation eabb7c5d-af0d-4c22-bab7-7f6f45fbba71 · outbound

This paper cites Probing Bosonic Stars with Atomic Clocks.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Probing Bosonic Stars with Atomic Clocks

Reference 59

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:5cb98bc0b9794dcfa846045a56dcc055f10393d644c3e4b6ab5255cac9c3a71e

Observation c0285685-7928-45d2-bf89-8e88e0362e17 · outbound

This paper cites Improved limits on the coupling of ultralight bosonic dark matter to photons from optical atomic clock comparisons.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter Improved limits on the coupling of ultralight bosonic dark matter to photons from optical atomic clock comparisons

Reference 60

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:f5293bd9b4d75f1521f0e3cb6d62858f01fcdf4cbcf40bf8b14d19dabeee8ef4

Observation fb7285da-54c5-4935-9c76-8cc5c4bdd8bd · outbound

This paper cites A thorium-229 optical nuclear clock with feedback loop.

Quantum corrections as a Bound for Detecting Self-Interacting Ultralight Dark Matter A thorium-229 optical nuclear clock with feedback loop

Reference 61

Resolution
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source=pdf_text observed=2026-07-14T11:06:47.203147Z digest=sha256:0db83b1b25628bc07ab8ce455c610ad7c4fffc11e7c5defdd529b1f18a0c7aaf

Pith citing papers

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