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Paper Citation Record · LEDGER

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology

As of 12 August 2026, this Paper Citation Record lists 96 of 96 outbound references and 0 inbound Pith citation observations for arXiv:2608.09390.

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pith.paper-citation-record.v1
2608.09390 v1

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measured 96 of 96 reference resolution

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96 of 96 outbound references displayed

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Outbound references

Observation 1b3c9794-1e2c-4195-9aa4-6b39840f7c18 · outbound

This paper cites Cluster counts III. $\Lambda$CDM extensions and the cluster tension.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Cluster counts III. $\Lambda$CDM extensions and the cluster tension

Reference 1

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Observation 08feebef-9e1c-41a2-a27a-0f550ed1b9b9 · outbound

This paper cites $\Lambda_{\rm s}$CDM model: A promising scenario for alleviation of cosmological tensions.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology $\Lambda_{\rm s}$CDM model: A promising scenario for alleviation of cosmological tensions

Reference 2

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Observation 73830ca3-4e37-438e-ae5a-09c7cda70206 · outbound

This paper cites (29) For a radiation-dominated universe ( ω = 1 /3), the con- tinuity equation gives ρ = ρ0a−4, leading to the scale factor evolution a(t) ∼ t1/2 (since H = ˙a/a ∼ t−1/2).

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology (29) For a radiation-dominated universe ( ω = 1 /3), the con- tinuity equation gives ρ = ρ0a−4, leading to the scale factor evolution a(t) ∼ t1/2 (since H = ˙a/a ∼ t−1/2)

Reference 3

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Observation 96cb8e7c-e1c5-4d23-a3c1-b3a15f97993c · outbound

This paper cites The fallacies of LCDM falsifications.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology The fallacies of LCDM falsifications

Reference 4

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Unresolved cited work

Reference 5

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Observation 4a672707-489e-4f65-b969-90fd6f980c84 · outbound

This paper cites Modified Gravity and Cosmology.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Modified Gravity and Cosmology

Reference 6

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Observation c345d6e1-ee86-4620-a9f1-9f0d38b6708d · outbound

This paper cites The Cosmology of Generalized Modified Gravity Models.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology The Cosmology of Generalized Modified Gravity Models

Reference 7

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Observation 5c56c6df-a63f-4a45-a46f-d52941879512 · outbound

This paper cites Nishonov, B.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Nishonov, B

Reference 8

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Observation 25f47df2-ae06-4e8c-8c72-4e33d339f8a6 · outbound

This paper cites Analysis of the Yukawa gravitational potential in $f(R)$ gravity I: semiclassical periastron advance.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Analysis of the Yukawa gravitational potential in $f(R)$ gravity I: semiclassical periastron advance

Reference 9

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Observation 3e5abd79-acbc-4617-852e-0ce4a8a5a3d8 · outbound

This paper cites Charged Black Holes with Yukawa Potential.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Charged Black Holes with Yukawa Potential

Reference 10

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Observation d940e92b-c72d-476f-82f4-2cf51b92fb4f · outbound

This paper cites This establishes an effec- tive modified gravity framework.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology This establishes an effec- tive modified gravity framework

Reference 11

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Observation 3e4dfa2a-8885-48d3-8874-c3f46942f168 · outbound

This paper cites On the Origin of Gravity and the Laws of Newton.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology On the Origin of Gravity and the Laws of Newton

Reference 12

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This paper cites Friedmann Equations from Entropic Force.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Friedmann Equations from Entropic Force

Reference 13

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This paper cites Entropic Corrections to Friedmann Equations.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Entropic Corrections to Friedmann Equations

Reference 14

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Unresolved cited work

Reference 15

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This paper cites Thermodynamical properties of nonsingular universe.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Thermodynamical properties of nonsingular universe

Reference 16

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Cosmological Tests of Modified Gravity

Reference 17

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Unresolved cited work

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Unresolved cited work

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This paper cites Big Bang Nucleosynthesis: 2015.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Big Bang Nucleosynthesis: 2015

Reference 20

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This paper cites Planck 2018 results. VI. Cosmological parameters.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Planck 2018 results. VI. Cosmological parameters

Reference 21

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Big-Bang Nucleosynthesis After Planck

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This paper cites Towards the Theory of the Yukawa Potential.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Towards the Theory of the Yukawa Potential

Reference 23

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Unresolved cited work

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Big Bang Nucleosynthesis constraints on $f(T, \mathcal{T})$ gravity

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Sheykhi and A

Reference 26

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This paper cites Differentiating with respect to time and using ˙H = dH/dt, for a flat universe ( k = 0) we obtain ˙H ( 1 − α 2λ2(1 + α) H −2 ) = − 4πG 1 + α (ρ + p).

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Differentiating with respect to time and using ˙H = dH/dt, for a flat universe ( k = 0) we obtain ˙H ( 1 − α 2λ2(1 + α) H −2 ) = − 4πG 1 + α (ρ + p)

Reference 27

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Entropic corrections to Friedmann equations and bouncing universe due to the zero-point length

Reference 28

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Akbar and R

Reference 29

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology where C = H 2 GR/(1 + α) and ǫ = Γ ln H 2

Reference 30

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology WIMP dark matter candidates and searches - current status and future prospects

Reference 31

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology The Waning of the WIMP? A Review of Models, Searches, and Constraints

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This paper cites US Cosmic Visions: New Ideas in Dark Matter 2017: Community Report.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology US Cosmic Visions: New Ideas in Dark Matter 2017: Community Report

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Dark Matter Detection in the Light of Recent Experimental Results

Reference 34

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This paper cites Constraints on Tsallis Cosmology from Big Bang Nucleosynthesis and Dark Matter Freeze-out.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Constraints on Tsallis Cosmology from Big Bang Nucleosynthesis and Dark Matter Freeze-out

Reference 35

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Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Supersymmetric Dark Matter

Reference 36

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Observation 99d1a9f5-4b85-4bee-b62b-e88ac067e962 · outbound

This paper cites Constraints on the Very Early Universe from Thermal WIMP Dark Matter.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Constraints on the Very Early Universe from Thermal WIMP Dark Matter

Reference 37

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Observation e5764892-a299-4d54-9eaa-37621d6b470a · outbound

This paper cites an unresolved cited work.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Unresolved cited work

Reference 38

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source=pdf_text observed=2026-08-11T18:20:41.372393Z digest=sha256:e85f8195d79c239e8647db206b19cc787d04da498b8f89c0567d7e9c9c778bf7

Observation 7dd77912-10c8-44e4-aa1a-aa5b386cb90a · outbound

This paper cites Standard Big-Bang Nucleosynthesis up to CNO with an improved extended nuclear network.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Standard Big-Bang Nucleosynthesis up to CNO with an improved extended nuclear network

Reference 39

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Observation 2c42c75f-fddd-4e3b-ba60-690fb7723e11 · outbound

This paper cites Particle Dark Matter: Evidence, Candidates and Constraints.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Particle Dark Matter: Evidence, Candidates and Constraints

Reference 40

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source=pdf_text observed=2026-08-11T18:20:41.338200Z digest=sha256:6b80d7a237cd3df2f8b2ad67cac6861bfac9b1ad5b82c18ca771f6858ba3b901

Observation 387903e5-40e9-4bbb-a50c-5048241bb3dc · outbound

This paper cites Dark Matter Candidates from Particle Physics and Methods of Detection.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Dark Matter Candidates from Particle Physics and Methods of Detection

Reference 41

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source=pdf_text observed=2026-08-11T18:20:41.341017Z digest=sha256:63dd1743c720671f9abefdf2735aad3d44da3b235dd0748b4ac381b90911e7c1

Observation 03d1a39a-e6ef-4f7b-b511-23b8ef9883fb · outbound

This paper cites Observations of primordial 4He, assuming η10 = 6, give Yp = 0 .2449 ± 0.004 [ 22].

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Observations of primordial 4He, assuming η10 = 6, give Yp = 0 .2449 ± 0.004 [ 22]

Reference 42

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source=pdf_text observed=2026-08-11T18:20:41.207423Z digest=sha256:e57641706b7ee3a2f21e1f53bf06415ade0ed57f86798384680d1de1b13cf56d

Observation 983e946a-789c-4e50-b944-2150a78150b3 · outbound

This paper cites TASI 2014 Lectures: The Hunt for Dark Matter.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology TASI 2014 Lectures: The Hunt for Dark Matter

Reference 43

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source=pdf_text observed=2026-08-11T18:20:41.344419Z digest=sha256:f4364b2558c84fee7e80b35c2e9872ea3eee32d3dce6880033582a2ec02c8b94

Observation 2911876f-9037-4bf2-a4e9-1ab0744dbd09 · outbound

This paper cites We will analyze the im- plications of this result for Yukawa cosmology in the fol- lowing subsection.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology We will analyze the im- plications of this result for Yukawa cosmology in the fol- lowing subsection

Reference 44

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source=pdf_text observed=2026-08-11T18:20:41.211187Z digest=sha256:e80879408dadb4b328743882c80280493e1dbfc274a0230690fef7075d2b22ee

Observation 71990894-5b94-41fb-ac21-d67f93482bcb · outbound

This paper cites Phenomenology of Self-Interacting Dark Matter in a Matter-Dominated Universe.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Phenomenology of Self-Interacting Dark Matter in a Matter-Dominated Universe

Reference 45

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source=pdf_text observed=2026-08-11T18:20:41.397611Z digest=sha256:a4673fc480a3b41ec685cc32a924a0f42e3bcc3f881ca339de7de6eb900bd7a0

Observation 7c1276bf-4bf6-46d9-bf79-bba4e03093f0 · outbound

This paper cites Dark Universe Phenomenology from Yukawa Potential?.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Dark Universe Phenomenology from Yukawa Potential?

Reference 46

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source=pdf_text observed=2026-08-11T18:20:41.401617Z digest=sha256:a8ccd1d9d866e5a5396f4431e3ac0e00d92a5a9385b8575b9edbca99bf19abf8

Observation ef391891-db58-4628-8a4c-c5a872aad285 · outbound

This paper cites Dark Matter Candidates: A Ten-Point Test.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Dark Matter Candidates: A Ten-Point Test

Reference 47

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source=pdf_text observed=2026-08-11T18:20:41.360763Z digest=sha256:da168ff4cb39ea3f72127fbe3e7fbb74d1b36ef7a55e7c4c24803108140feb88

Observation 22ac8c0a-e9e0-4383-9b9d-f9d87c42def0 · outbound

This paper cites Entropy of Static Spacetimes and Microscopic Density of States.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Entropy of Static Spacetimes and Microscopic Density of States

Reference 48

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source=pdf_text observed=2026-08-11T18:20:41.409181Z digest=sha256:466e68851a133a9a7e94959512b8c11acb019f78346d0e553d7fce06617d61c7

Observation 1f028b00-0019-4fde-b88f-8472ca07ed98 · outbound

This paper cites The intersection of these two bounds yields the final allowed range −0.15 ≲ α ≲ 0.12.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology The intersection of these two bounds yields the final allowed range −0.15 ≲ α ≲ 0.12

Reference 49

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source=pdf_text observed=2026-08-11T18:20:41.219322Z digest=sha256:512888ceb4bc3ed5a75ddf810e2a94eff8af5fb030e2ddbcdd2a3cf33cb90f9e

Observation dad1654f-bbdf-473b-a835-614904f9096e · outbound

This paper cites A general solution in the Newtonian limit of f(R)- gravity.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology A general solution in the Newtonian limit of f(R)- gravity

Reference 50

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source=pdf_text observed=2026-08-11T18:20:41.416689Z digest=sha256:9977a60742b27288065a7cef7fcf2937c2f34344ba02b5c5a70dacae04ca5375

Observation 2cddfb0f-4d09-429b-bcb3-78ed9768fc78 · outbound

This paper cites Dark Matter Relic Abundance and Scalar-Tensor Dark Energy.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Dark Matter Relic Abundance and Scalar-Tensor Dark Energy

Reference 51

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source=pdf_text observed=2026-08-11T18:20:41.375983Z digest=sha256:dedb01de1e66a766d24ef996b91dcd7a276d0571066acd9bb79d4e3a44f1ab98

Observation 3cce4912-205c-416e-8cad-b99c0fa8214c · outbound

This paper cites The bound in Eq.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology The bound in Eq

Reference 52

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source=pdf_text observed=2026-08-11T18:20:41.226512Z digest=sha256:7422066cfc626fac918095774a8aecdbc339169466665dbc06d0a5cad684aafb

Observation 5ea68260-1393-4510-8b5d-74cb40b993b9 · outbound

This paper cites Einstein and Jordan frames reconciled: a frame-invariant approach to scalar-tensor cosmology.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Einstein and Jordan frames reconciled: a frame-invariant approach to scalar-tensor cosmology

Reference 53

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source=pdf_text observed=2026-08-11T18:20:41.379536Z digest=sha256:8735aa49abe1d806b125e8c3875ca1f4bb5951862d0a997992a638c2a3a28f86

Observation 6016b047-2d29-4150-a1ac-22a1f8b0ad37 · outbound

This paper cites Bulk etch rate measurements and calibrations of CR39 and Makrofol nuclear track detectors.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Bulk etch rate measurements and calibrations of CR39 and Makrofol nuclear track detectors

Reference 54

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source=pdf_text observed=2026-08-11T18:20:41.382868Z digest=sha256:ea29041c9130a21b92ac4234edc6f8bee815b931ffe0aebfaba5e463bdd8856e

Observation 1e35d8dc-b883-434a-80fd-7abcf6fbee65 · outbound

This paper cites Salati, Quintessence and the Relic Density of Neu- tralinos, Phys.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Salati, Quintessence and the Relic Density of Neu- tralinos, Phys

Reference 55

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source=pdf_text observed=2026-08-11T18:20:41.386380Z digest=sha256:0417cd2ec0fbe0b9d7aa69f6b152c807b07b7af0059b1714c1ab816b542fde92

Observation c0daf83b-4315-4fef-94cc-a5ab4c36da7d · outbound

This paper cites Profumo and P.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Profumo and P

Reference 56

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source=pdf_text observed=2026-08-11T18:20:41.389583Z digest=sha256:54668efc1f89e7e89f85b9111b8291d447ee72ff56b356a37e4dfdcd4290c383

Observation d523d984-89cf-4a45-ad2b-fa9c7fb33813 · outbound

This paper cites Relic density of dark matter in brane world cosmology.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Relic density of dark matter in brane world cosmology

Reference 57

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Observation 86b2dc95-efcf-4f41-8072-f54b609b777b · outbound

This paper cites Testing a Dilaton Gravity Model using Nucleosynthesis.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Testing a Dilaton Gravity Model using Nucleosynthesis

Reference 58

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source=pdf_text observed=2026-08-11T18:20:41.444870Z digest=sha256:14f553af80edb73621d44be629a900ffb832e0465c8c0dfa34244d8aecbe1d9d

Observation 0eb5c362-98c1-4830-9571-99868a69f4cf · outbound

This paper cites Barrow Entropy Corrections to Friedmann Equations.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Barrow Entropy Corrections to Friedmann Equations

Reference 59

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Observation c318c1c0-e681-4b84-a395-38f23c721b48 · outbound

This paper cites ( 58), the Boltzmann equation takes the final compact form dY dx = −λx−l−2( Y 2 − Y 2 EQ ) , (61) where λ is a constant given by λ = ( x⟨σv⟩s H(m) ) x=1 = 0.264 ( h∗ √g∗ ) MPlmχσ0.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology ( 58), the Boltzmann equation takes the final compact form dY dx = −λx−l−2( Y 2 − Y 2 EQ ) , (61) where λ is a constant given by λ = ( x⟨σv⟩s H(m) ) x=1 = 0.264 ( h∗ √g∗ ) MPlmχσ0

Reference 60

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source=pdf_text observed=2026-08-11T18:20:41.215579Z digest=sha256:2132a72ce0db2da446102924237d10aff16f5d64fad5d236a58c7db5bdc4071c

Observation 84ec4fdd-db98-42aa-959e-d55a232d63d4 · outbound

This paper cites Mass for the graviton.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Mass for the graviton

Reference 61

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Observation 5ccdf2cb-772f-4791-b34e-56ec8a727586 · outbound

This paper cites BBN For Pedestrians.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology BBN For Pedestrians

Reference 62

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source=pdf_text observed=2026-08-11T18:20:41.460288Z digest=sha256:87b22e35e21e115fb6f694b2863623a5e742e190a3f0680729446038c9be41bd

Observation 352b2535-0adc-46fb-b180-46f3d481e7ee · outbound

This paper cites Gravity Modification with Yukawa-type Potential: Dark Matter and Mirror Gravity.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Gravity Modification with Yukawa-type Potential: Dark Matter and Mirror Gravity

Reference 63

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Observation e446f954-792f-432b-815a-268f77bc6d26 · outbound

This paper cites Testing modified gravity via Yukawa potential in two body problem: Analytical solution and observational constraints.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Testing modified gravity via Yukawa potential in two body problem: Analytical solution and observational constraints

Reference 64

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Observation 2dee4ecb-2a3e-4cb6-be9a-123461bbda08 · outbound

This paper cites Exponential corrections to black hole entropy.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Exponential corrections to black hole entropy

Reference 65

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source=pdf_text observed=2026-08-11T18:20:41.425541Z digest=sha256:050aa20b21583c35bb9ed6a0b477d66debc71b87fba9751ca7d25eb415e73cd7

Observation 8f8f6edd-447a-4fa5-8e0f-e4cb4f6bd9fc · outbound

This paper cites Unified first law of black-hole dynamics and relativistic thermodynamics.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Unified first law of black-hole dynamics and relativistic thermodynamics

Reference 66

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source=pdf_text observed=2026-08-11T18:20:41.428773Z digest=sha256:be1569c1566bf7bb8fa045d0ca88f2e90c067ab3ddf0a7ebc617c26c197dc81c

Observation d92ccbdc-3431-40c9-9f34-bb09ff6c62bc · outbound

This paper cites Dynamic black-hole entropy.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Dynamic black-hole entropy

Reference 67

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source=pdf_text observed=2026-08-11T18:20:41.432289Z digest=sha256:71868100e3eff47425673d48a7f27a7bcdaa5c18362b16a0b4d962769a0d55ab

Observation f6975694-7a24-40ef-8f56-722ffebcb59a · outbound

This paper cites Cosmic Holography.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Cosmic Holography

Reference 68

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source=pdf_text observed=2026-08-11T18:20:41.436241Z digest=sha256:e36a69ff0e31dfb119110b894e4f58dc57f8d8d3de38576be7ffa6ada149da00

Observation ff8536ec-bc64-4d4e-be41-1103aeff588a · outbound

This paper cites Primordial Big Bang Nucleosynthesis and Generalized Uncertainty Principle.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Primordial Big Bang Nucleosynthesis and Generalized Uncertainty Principle

Reference 69

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source=pdf_text observed=2026-08-11T18:20:41.439986Z digest=sha256:decb94b26de974c193651b05802408fd8134b81d4e5e85c4f13c8fab28f7363a

Observation 42e13669-c0ef-4140-b2f9-e5b019602af4 · outbound

This paper cites Quark mass thresholds in QCD thermodynamics.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Quark mass thresholds in QCD thermodynamics

Reference 70

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source=pdf_text observed=2026-08-11T18:20:41.489113Z digest=sha256:4a31c144e537c1837f5858fc26098faa347d59df3e781d313e57116c35b8956e

Observation c78babde-65b4-4370-b06d-a58769c74074 · outbound

This paper cites Neutrinos And Big Bang Nucleosynthesis.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Neutrinos And Big Bang Nucleosynthesis

Reference 71

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source=pdf_text observed=2026-08-11T18:20:41.449031Z digest=sha256:a4f61cbe69b14ed350156e8d6ef07293b35ad686031aee10039868b2711e7a09

Observation b0470cd0-30dd-4fa2-b713-52a76e622eb6 · outbound

This paper cites Constraining The Early-Universe Baryon Density And Expansion Rate.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Constraining The Early-Universe Baryon Density And Expansion Rate

Reference 72

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source=pdf_text observed=2026-08-11T18:20:41.452586Z digest=sha256:f0c0b4b20f2a22860d06fc63baa540e5f0b57b8238589d479f6e0075097934cf

Observation d2df4fd9-6f0f-4dff-ab26-ac8d5e9d3f40 · outbound

This paper cites Big Bang Nucleosynthesis and Entropy Evolution in $f(R,T)$ Gravity.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Big Bang Nucleosynthesis and Entropy Evolution in $f(R,T)$ Gravity

Reference 73

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source=pdf_text observed=2026-08-11T18:20:41.456678Z digest=sha256:00e45b9c3095ff908cc047f4b02f0523e4e2b31d4854fb4b98f5dade2dc24c67

Observation 9dd176cd-472a-4cf7-9ef1-68bc645a7171 · outbound

This paper cites The Effects of QCD Equation of State on the Relic Density of WIMP Dark Matter.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology The Effects of QCD Equation of State on the Relic Density of WIMP Dark Matter

Reference 74

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source=pdf_text observed=2026-08-11T18:20:41.502843Z digest=sha256:b04d338a20d626be5802876c9f12b641df8a13cde2a8c3e75213748b0deded17

Observation b7dcfaf7-bf80-4a46-bde6-d63aed5f358b · outbound

This paper cites Primordial Nucleosynthesis in the Precision Cosmology Era.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Primordial Nucleosynthesis in the Precision Cosmology Era

Reference 75

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source=pdf_text observed=2026-08-11T18:20:41.463751Z digest=sha256:9e21e2b210d2ba0b81bad52d514ebb88a513f0c7a2d59604a66cca7a9652c3e7

Observation aabe49cd-e9f8-450d-ae4d-e2df98133f74 · outbound

This paper cites Seven-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Are There Cosmic Microwave Background Anomalies?.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Seven-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Are There Cosmic Microwave Background Anomalies?

Reference 76

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source=pdf_text observed=2026-08-11T18:20:41.467777Z digest=sha256:44f989b97117378eb08d5088cfc263ff50629d386d82175a3531355aa802ee11

Observation ae679921-7421-41a4-be4d-637468a7e3fe · outbound

This paper cites Observational constraints on Yukawa cosmology and connection with black hole shadows.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Observational constraints on Yukawa cosmology and connection with black hole shadows

Reference 77

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source=pdf_text observed=2026-08-11T18:20:41.471260Z digest=sha256:98a5fa0b01fb85752318efd2771e62a79ff4b41278123feeb1d10d84bdbfa004

Observation 55a58462-c805-4020-bb73-1be0ff244852 · outbound

This paper cites Dynamics and stability of the two-body problem with Yukawa correction to Newton's gravity, revisited and applied numerically to the solar system.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Dynamics and stability of the two-body problem with Yukawa correction to Newton's gravity, revisited and applied numerically to the solar system

Reference 78

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local_arxiv, observed 2026-08-11T18:20:41.849777Z

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source=pdf_text observed=2026-08-11T18:20:41.474795Z digest=sha256:d51354e94e996e941bd64a221c8cb026510f92a67ff10882b1e7f06b69234137

Observation 45409b00-93f0-4a69-ba70-b4d7426842a7 · outbound

This paper cites Supersymmetry and Cosmology.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Supersymmetry and Cosmology

Reference 79

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local_arxiv, observed 2026-08-11T18:20:41.834450Z

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation f2b6cfb3-5849-4483-a91e-81f49c04520c · outbound

This paper cites Dodelson and F.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Dodelson and F

Reference 80

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Observation a5075962-ec91-4409-8bba-1770f1e8121d · outbound

This paper cites On Effective Degrees of Freedom in the Early Universe.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology On Effective Degrees of Freedom in the Early Universe

Reference 81

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source=pdf_text observed=2026-08-11T18:20:41.485585Z digest=sha256:005b0ac65e180ac583ee972377767b3ac142e0626aa2ad94f25ff82ef5e6cebe

Observation ab02e3b2-fd42-4718-8a87-849d33a54efd · outbound

This paper cites Archidiacono, E.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Archidiacono, E

Reference 82

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source=pdf_text observed=2026-08-11T18:20:41.531314Z digest=sha256:20e6e294e80560088b556f74805a39029ded1eada16a481027e0225640d87b9c

Observation ea7af60a-09f7-453e-9774-7b84ca14ec6b · outbound

This paper cites An Introduction to Particle Dark Matter.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology An Introduction to Particle Dark Matter

Reference 83

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source=pdf_text observed=2026-08-11T18:20:41.492386Z digest=sha256:7256f74be2bfeef25c65485d3ee342e7882e14a4b0a030d90cd58445a98fdc55

Observation c65ceaa2-4a6f-422c-9fa1-484479c44a04 · outbound

This paper cites TeV-Scale Thermal WIMPs: Unitarity and its Consequences.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology TeV-Scale Thermal WIMPs: Unitarity and its Consequences

Reference 84

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source=pdf_text observed=2026-08-11T18:20:41.495884Z digest=sha256:886ea5f33b933a8afccca6d378354018a7ec6b30c1b2a716ce8da629124d337d

Observation 2a06ec11-e354-46ca-96f0-940e56a371e7 · outbound

This paper cites Precise Relic WIMP Abundance and its Impact on Searches for Dark Matter Annihilation.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Precise Relic WIMP Abundance and its Impact on Searches for Dark Matter Annihilation

Reference 85

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source=pdf_text observed=2026-08-11T18:20:41.499188Z digest=sha256:69b9d22e837a6e8bea7a9cbc9aaed710ebd270ff3410233fbfdcd456cffd6fde

Observation 88e944af-0b35-49a4-af37-0090e0b5f6f3 · outbound

This paper cites GeV-Scale Thermal WIMPs: Not Even Slightly Dead.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology GeV-Scale Thermal WIMPs: Not Even Slightly Dead

Reference 87

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source=pdf_text observed=2026-08-11T18:20:41.506488Z digest=sha256:165081f24b98d28a19155cb04a6454df5e20ca15ef3dba3d26c7d6d42ba0881e

Observation 65f256f8-4f2c-4013-882e-a10c95edaad3 · outbound

This paper cites an unresolved cited work.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Unresolved cited work

Reference 88

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation c693ebba-24a9-4e2a-b07d-2af57f7b86aa · outbound

This paper cites an unresolved cited work.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Unresolved cited work

Reference 89

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source=pdf_text observed=2026-08-11T18:20:41.222279Z digest=sha256:da103157a3389c1954de79496f8fe02cac51cfaa436f9b5d79ab32a9155e8d73

Observation 4d409639-a6a8-4686-bcfd-93ea7b16fd3e · outbound

This paper cites A Modified Scalar-Tensor-Vector Gravity Theory and the Constraint on its Parameters.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology A Modified Scalar-Tensor-Vector Gravity Theory and the Constraint on its Parameters

Reference 90

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source=pdf_text observed=2026-08-11T18:20:41.513575Z digest=sha256:1388731db985efcb6e9679424bff8ed085a41afc7e29e01e82ad25d320f08910

Observation c8cf767d-b684-4458-ac3e-f23e2857f2d0 · outbound

This paper cites (92) It is convenient to rewrite the above equation in the form ds(T ) dt = −3Hs(T ) → dt = − ds(T ) 3s(T ) H −1.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology (92) It is convenient to rewrite the above equation in the form ds(T ) dt = −3Hs(T ) → dt = − ds(T ) 3s(T ) H −1

Reference 91

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source=pdf_text observed=2026-08-11T18:20:41.230099Z digest=sha256:50a3a85f0519af2e4243e12811b5c7c79fc30c097ff96c7a299ae41ddf173a4e

Observation 50b14bac-42c5-49d4-89d7-189d7732a7c1 · outbound

This paper cites Constraining the range of Yukawa gravity interaction from S2 star orbits.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Constraining the range of Yukawa gravity interaction from S2 star orbits

Reference 92

Resolution
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source=pdf_text observed=2026-08-11T18:20:41.517121Z digest=sha256:ab8f3d53150e1417c3e828038fe8dbc9ff5e2ec9094ac53b8d29086168cffed0

Observation f025d5fc-8207-4280-88a2-852a5f96c6aa · outbound

This paper cites Constraints on Yukawa gravity parameters from observations of bright stars.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Constraints on Yukawa gravity parameters from observations of bright stars

Reference 93

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local_arxiv, observed 2026-08-11T18:20:41.729972Z

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-08-11T18:20:41.520670Z digest=sha256:483b8eec9f40cdb9a9076ac30ab442494a3f2b2431ec93c4bbc419677aa1fa1c

Observation 83692a6b-bc08-4362-9596-f56b9e115d06 · outbound

This paper cites Tracking the Local Group Dynamics by Extended Gravity.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Tracking the Local Group Dynamics by Extended Gravity

Reference 94

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local_arxiv, observed 2026-08-11T18:20:41.714495Z

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation d986a3c7-d073-45d5-b633-cb13ca6d90ba · outbound

This paper cites Scalar field effects on the orbit of S2 star.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Scalar field effects on the orbit of S2 star

Reference 95

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source=pdf_text observed=2026-08-11T18:20:41.527965Z digest=sha256:ba4f67d5dee66e1cf8ae2e55935b53946b071a36eddace0a350a1c6e8c269ebf

Observation c77c1d19-3814-485a-8850-861d621cb06d · outbound

This paper cites Testing Yukawa cosmology at the Milky Way and M31 galactic scales.

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Testing Yukawa cosmology at the Milky Way and M31 galactic scales

Reference 96

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source=pdf_text observed=2026-08-11T18:20:41.534603Z digest=sha256:a482158d9bd5b249af92d44590ebce5ec0857021e233b07b03b9ba8654d37f58

Observation d6c1541b-252b-45ab-b420-c268ec272547 · outbound

This paper cites Weinberg, Cosmology, New York: Oxford University press, (2008).

Big-Bang Nucleosynthesis and WIMP Dark Matter Freeze-Out as Probes of Yukawa Cosmology Weinberg, Cosmology, New York: Oxford University press, (2008)

Reference 97

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raw_fallback, observed 2026-08-11T18:20:43.051590Z

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