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Paper Citation Record · LEDGER

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications

As of 8 August 2026, this Paper Citation Record lists 53 of 53 outbound references and 1 inbound Pith citation observation for arXiv:2506.23770.

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

pith.paper-citation-record.v1
2506.23770 v1

Coverage vector

measured 53 of 53 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-06T21:42:20.181607Z

measured 54 of 54 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-08T06:32:00.761636+00:00

measured 1 of 1 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-05-18T00:40:30.095385Z

measured 0 of 1 external citation measurements

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Source: arxiv_reference, observed 2026-05-18T00:40:33.328650Z

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53 of 53 outbound references displayed

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Outbound references

Observation 969079cc-f181-49ba-98ee-344891cdb20e · outbound

This paper cites Freeze-In Production of FIMP Dark Matter.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Freeze-In Production of FIMP Dark Matter

Reference 1

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Observation 5c79f074-991f-42e8-8c40-797b4f04ec91 · outbound

This paper cites Viability of post-inflationary freeze-in with precision cosmology.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Viability of post-inflationary freeze-in with precision cosmology

Reference 2

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Observation 6b35ae3c-c5a1-4f1f-86a2-940529275421 · outbound

This paper cites Scalar overproduction in standard cosmology and predictivity of non-thermal dark matter.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Scalar overproduction in standard cosmology and predictivity of non-thermal dark matter

Reference 3

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Unresolved cited work

Reference 4

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Observation 0dd520da-7968-4d8b-8405-f2e722756001 · outbound

This paper cites an unresolved cited work.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Unresolved cited work

Reference 5

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Observation 1123851a-ab56-4031-919a-2ed96514de48 · outbound

This paper cites Albrecht and P.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Albrecht and P

Reference 6

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Observation 21ae1f53-a9b1-478f-a045-4c0977c1e8da · outbound

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

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Planck 2018 results. VI. Cosmological parameters

Reference 7

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Observation 5827d189-b776-455e-989f-4b33f1bd2c33 · outbound

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Unresolved cited work

Reference 8

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Observation 795b5d65-b921-4bb3-93cf-d764a9c87616 · outbound

This paper cites Superconformal Inflationary $\alpha$-Attractors.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Superconformal Inflationary $\alpha$-Attractors

Reference 9

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Observation d6fd89fb-6573-45dd-a425-1cbd03c1d01e · outbound

This paper cites Induced gravity inflation in the standard model of particle physics.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Induced gravity inflation in the standard model of particle physics

Reference 10

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Observation aef8c4e3-2f44-407f-b016-910ca98c8952 · outbound

This paper cites The Standard Model Higgs boson as the inflaton.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications The Standard Model Higgs boson as the inflaton

Reference 11

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Observation b0ea7bc4-8475-4c4d-8b92-cd6dbea6dadc · outbound

This paper cites Standard Model Higgs boson mass from inflation.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Standard Model Higgs boson mass from inflation

Reference 12

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Observation 09bec765-1ef7-4bf2-a764-396c0f665c22 · outbound

This paper cites On initial conditions for the Hot Big Bang.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications On initial conditions for the Hot Big Bang

Reference 13

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Observation 771b454b-8ef8-4669-86ed-fda2df1f1717 · outbound

This paper cites Higgs inflation: consistency and generalisations.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Higgs inflation: consistency and generalisations

Reference 14

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Observation f34985e7-f71e-4147-a258-51c77fb0b0ec · outbound

This paper cites Gondolo and G.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Gondolo and G

Reference 15

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This paper cites Dark Matter Search Results from 4.2 Tonne-Years of Exposure of the LUX-ZEPLIN (LZ) Experiment.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Dark Matter Search Results from 4.2 Tonne-Years of Exposure of the LUX-ZEPLIN (LZ) Experiment

Reference 16

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Observation 0c5b09a1-b181-474a-b969-508cc894d8d3 · outbound

This paper cites Thermally Generated Gauge Singlet Scalars as Self-Interacting Dark Matter.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Thermally Generated Gauge Singlet Scalars as Self-Interacting Dark Matter

Reference 17

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Observation a2932577-a6c5-46e2-8f84-b1fa47939924 · outbound

This paper cites A Two-Component Dark Matter Model and its Associated Gravitational Waves.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications A Two-Component Dark Matter Model and its Associated Gravitational Waves

Reference 18

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This paper cites WIMP and FIMP Dark Matter in Singlet-Triplet Fermionic Model.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications WIMP and FIMP Dark Matter in Singlet-Triplet Fermionic Model

Reference 19

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Observation ed908aa1-fa7c-40a6-b1b8-060b4e3cce86 · outbound

This paper cites A two-component vector WIMP -- fermion FIMP dark matter model with an extended seesaw mechanism.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications A two-component vector WIMP -- fermion FIMP dark matter model with an extended seesaw mechanism

Reference 20

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This paper cites Interplay between Higgs inflation and dark matter models with dark $U(1)$ gauge symmetry.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Interplay between Higgs inflation and dark matter models with dark $U(1)$ gauge symmetry

Reference 21

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This paper cites Multi-component dark matter and Galactic 511 keV $\gamma$-ray emission.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Multi-component dark matter and Galactic 511 keV $\gamma$-ray emission

Reference 22

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Unresolved cited work

Reference 23

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This paper cites FeynRules 2.0 - A complete toolbox for tree-level phenomenology.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications FeynRules 2.0 - A complete toolbox for tree-level phenomenology

Reference 24

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications CalcHEP 3.4 for collider physics within and beyond the Standard Model

Reference 25

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications micrOMEGAs5.0 : freeze-in

Reference 26

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications A detailed map of Higgs boson interactions by the ATLAS experiment ten years after the discovery

Reference 27

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Measurements of the Higgs boson production and decay rates and constraints on its couplings from a combined ATLAS and CMS analysis of the LHC $pp$ collision data at $\sqrt{s}=$ 7 and 8 TeV

Reference 28

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Higgs Boson Precision Analysis of the Full LHC Run 1 and Run 2 Data

Reference 29

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications WIMP-FIMP option and neutrino masses via a novel anomaly-free B-L symmetry

Reference 30

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Neutralino Relic Density including Coannihilations

Reference 31

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Higgs production in hadron collisions: soft and virtual QCD corrections at NNLO

Reference 32

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Next-to-Next-to-Leading Order Higgs Production at Hadron Colliders

Reference 33

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications The Anatomy of Electro-Weak Symmetry Breaking. I: The Higgs boson in the Standard Model

Reference 34

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Higgs Portal Inflation

Reference 35

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This paper cites A more accurate analytic calculation of the spectrum of cosmological perturbations produced during inflation.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications A more accurate analytic calculation of the spectrum of cosmological perturbations produced during inflation

Reference 36

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Formalising the Slow-Roll Approximation in Inflation

Reference 37

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This paper cites Cosmological parameter estimation and the inflationary cosmology.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Cosmological parameter estimation and the inflationary cosmology

Reference 38

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This paper cites Higgs-portal assisted Higgs inflation with a sizeable tensor-to-scalar ratio.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Higgs-portal assisted Higgs inflation with a sizeable tensor-to-scalar ratio

Reference 39

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Unresolved cited work

Reference 40

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Investigating the near-criticality of the Higgs boson

Reference 41

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Power-counting and the Validity of the Classical Approximation During Inflation

Reference 42

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications On the Naturalness of Higgs Inflation

Reference 43

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Higgs Inflation and Naturalness

Reference 44

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Comment on Higgs Inflation and Naturalness

Reference 45

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications On Inflation with Non-minimal Coupling

Reference 46

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications High Scale Electroweak Phase Transition: Baryogenesis & Symmetry Non-Restoration

Reference 47

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Higgs Physics at the HL-LHC and HE-LHC

Reference 48

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This paper cites ILC Higgs White Paper.

Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications ILC Higgs White Paper

Reference 49

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Probing Quartic Higgs Self-Interaction

Reference 50

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Unresolved cited work

Reference 51

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Unresolved cited work

Reference 52

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Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications Aad et al

Reference 53

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Pith citing papers

Observation a857aa71-a797-4fdc-959e-a1689172fca0 · inbound

Low-reheating scenario in dark Higgs inflation and its impact on dark photon dark matter production cites this paper.

Low-reheating scenario in dark Higgs inflation and its impact on dark photon dark matter production Constraining Inflation via FIMP dark matter using the $\beta$-function with collider implications

Reference 57

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