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Paper Citation Record · LEDGER

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials

As of 16 August 2026, this Paper Citation Record lists 59 of 59 outbound references and 5 inbound Pith citation observations for arXiv:2507.22706.

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

pith.paper-citation-record.v1
2507.22706 v1

Coverage vector

measured 59 of 59 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-06T11:34:08.523315Z

measured 64 of 64 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-16T06:30:59.297886+00:00

measured 5 of 5 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-04T00:09:34.924656Z

measured 0 of 1 external citation measurements

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Source: pith, observed 2026-07-08T13:44:54.985410Z

Reference resolution

59 of 59 outbound references displayed

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External citation measurements

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Outbound references

Observation 88afcf52-d184-4799-8f28-99fd132eb35b · outbound

This paper cites an unresolved cited work.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Unresolved cited work

Reference 1

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Observation d3a118c1-ffc4-4d7e-bda5-3a305f5d1041 · outbound

This paper cites Sher, Electroweak Higgs Potentials and Vacuum Stability , Phys.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Sher, Electroweak Higgs Potentials and Vacuum Stability , Phys

Reference 2

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Observation 10800e5a-65f1-42f8-9dcc-405e657205fd · outbound

This paper cites Jackiw, Functional evaluation of the effective potential , Phys.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Jackiw, Functional evaluation of the effective potential , Phys

Reference 3

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Observation 70bc128e-16ba-43f1-b173-ff347b6e7476 · outbound

This paper cites Dolan and R.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Dolan and R

Reference 4

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Observation 9145cf20-479e-48a0-a92e-8bed76797748 · outbound

This paper cites Kluberg-Stern and J.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Kluberg-Stern and J

Reference 5

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Observation df5c4c2d-3637-472e-92dd-63dbc720be0c · outbound

This paper cites Piguet and K.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Piguet and K

Reference 6

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Observation 87fa3e84-d3eb-4794-8ec1-f7081a09253d · outbound

This paper cites Kluberg-Stern and J.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Kluberg-Stern and J

Reference 7

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Observation 18b0b22e-e32c-49fc-ac98-2d8561458bb7 · outbound

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Unresolved cited work

Reference 8

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Observation da7c1e9f-6dd1-45c6-8407-bcd2b6323a2f · outbound

This paper cites Gauge Independence of the Effective Potential Revisited.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Gauge Independence of the Effective Potential Revisited

Reference 9

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Observation 2a95e0bd-9596-46c0-8bf0-906da72a8792 · outbound

This paper cites The Nielsen Identities of the SM and the definition of mass.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials The Nielsen Identities of the SM and the definition of mass

Reference 10

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Observation 7d5cba19-d493-4a15-a234-2cbb76cae2a2 · outbound

This paper cites Width and Partial Widths of Unstable Particles in the Light of the Nielsen Identities.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Width and Partial Widths of Unstable Particles in the Light of the Nielsen Identities

Reference 11

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Observation 366711e5-eba4-4930-9c3e-ac541fe10bef · outbound

This paper cites The Higgs Boson Lineshape.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials The Higgs Boson Lineshape

Reference 12

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Observation 4373fbce-c980-4733-a96c-67f1d3c447dc · outbound

This paper cites Removing the gauge parameter dependence of the effective potential by a field redefinition.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Removing the gauge parameter dependence of the effective potential by a field redefinition

Reference 13

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Unresolved cited work

Reference 14

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Observation 19d287a1-0e83-4e03-a0a1-646b29664c30 · outbound

This paper cites Gauge independence of the bubble nucleation rate in theories with radiative symmetry breaking.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Gauge independence of the bubble nucleation rate in theories with radiative symmetry breaking

Reference 15

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This paper cites Baryon Washout, Electroweak Phase Transition, and Perturbation Theory.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Baryon Washout, Electroweak Phase Transition, and Perturbation Theory

Reference 16

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Consistent Use of Effective Potentials

Reference 17

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This paper cites The One-Loop Effective Potential in Non-Linear Gauges.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials The One-Loop Effective Potential in Non-Linear Gauges

Reference 18

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Observation d03a2279-a393-48fb-9e7e-ae3bf3da5435 · outbound

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials On the gauge dependence of vacuum transitions at finite temperature

Reference 19

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Observation c7ebde69-0099-40f8-ad9f-1169d41838de · outbound

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials The cosmological Higgstory of the vacuum instability

Reference 20

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Finite temperature field theory and phase transitions

Reference 21

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Observation 8de8c51e-12e1-4fe6-8754-d5a24e33a03f · outbound

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Computing the gauge-invariant bubble nucleation rate in finite temperature effective field theory

Reference 22

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Nucleation at finite temperature: a gauge-invariant, perturbative framework

Reference 23

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Higher-dimensional operators at finite-temperature affect gravitational-wave predictions

Reference 24

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Observation fb072a72-fc92-4062-b137-e945518debbe · outbound

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Taming Infrared Divergences in the Effective Potential

Reference 25

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Observation c9a436ae-6a9d-4087-a253-4692e1e34838 · outbound

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Interplay of Infrared Divergences and Gauge-Dependence of the Effective Potential

Reference 26

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Gauge Invariant Effective Potential

Reference 27

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Unresolved cited work

Reference 28

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Observation 0d591ae7-90cf-44ec-ad6d-093131b386c5 · outbound

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Unresolved cited work

Reference 29

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Complete determination of the singularity structure of zeta functions

Reference 30

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Observation 49c5c1db-8fcd-4189-8a4c-50f73be6a462 · outbound

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Wodzicki, Noncommutative residue Chapter I

Reference 31

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Observation 92e532f7-c6c6-4ad7-a3b5-49a055b0c13f · outbound

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Wodzicki residue and anomalies of current algebras

Reference 32

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Observation 907674be-4509-4cad-b9b1-b40c1750200f · outbound

This paper cites Quantum Fields and Extended Objects in Space-Times with Constant Curvature Spatial Section.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Quantum Fields and Extended Objects in Space-Times with Constant Curvature Spatial Section

Reference 33

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Observation ce564cd9-8c0b-4e80-9107-bb5eb72a919d · outbound

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Zeta-function regularization, the multiplicative anomaly and the Wodzicki residue

Reference 34

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Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Is the multiplicative anomaly dependent on the regularization ?

Reference 35

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Observation 0456a957-22bb-4f66-8063-9962b8c58d42 · outbound

This paper cites Calculation of Heat-Kernel Coefficients and Usage of Computer Algebra.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Calculation of Heat-Kernel Coefficients and Usage of Computer Algebra

Reference 37

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source=pdf_text observed=2026-08-06T11:34:06.710463Z digest=sha256:d59ed580662f072bdf3be86dd30bd47579f657becc8a6b751f2abfa80ff539d2

Observation ca7746b3-b612-4519-a29f-1a315e72ee19 · outbound

This paper cites Heat kernel expansion: user's manual.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Heat kernel expansion: user's manual

Reference 38

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source=pdf_text observed=2026-08-06T11:34:06.827160Z digest=sha256:0180f83437819cedbeb2019b5c2a60b2fc57eb5c713ad8114154a5936a2de6bb

Observation 2206e2f2-2bb9-455f-bfca-16863dbbfcea · outbound

This paper cites Heat Kernel Approach in Quantum Field Theory.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Heat Kernel Approach in Quantum Field Theory

Reference 39

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source=pdf_text observed=2026-08-06T11:34:07.003740Z digest=sha256:dc2b00617eb6ff827a9e0807a7b03fd7e6e049c7acb3cf42a397e257f22e3d4e

Observation bd4937bf-3e76-4690-9cfc-187d48802930 · outbound

This paper cites Geometry of determinants of elliptic operators.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Geometry of determinants of elliptic operators

Reference 40

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source=pdf_text observed=2026-08-06T11:34:07.109557Z digest=sha256:12abec182ecfe97a6809a1798b91502ecb7a3909e091f1cd05db3f1e1c2c9ef7

Observation c543bc8a-bc2e-4ec1-bdac-30cdced83758 · outbound

This paper cites an unresolved cited work.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Unresolved cited work

Reference 41

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source=pdf_text observed=2026-08-06T11:34:07.197525Z digest=sha256:9f50bd37a08c6e1a0ad7871919c5afde5044dddd4f71109e455b3fec6c47546a

Observation 12bfd67d-0c8e-46a5-99c8-47a28b54f3f0 · outbound

This paper cites One-loop Effective Action up to Dimension Eight: Integrating out Heavy Scalar(s).

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials One-loop Effective Action up to Dimension Eight: Integrating out Heavy Scalar(s)

Reference 42

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source=pdf_text observed=2026-08-06T11:34:07.246989Z digest=sha256:7f617950785a951e95d6b7b79588a07779c2aefd56bea8b57977651c77fbc785

Observation 1826e95d-b685-4077-bacd-e1ad65169132 · outbound

This paper cites One-loop Effective Action up to Dimension Eight: Integrating out Heavy Fermion(s).

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials One-loop Effective Action up to Dimension Eight: Integrating out Heavy Fermion(s)

Reference 43

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source=pdf_text observed=2026-08-06T11:34:07.330581Z digest=sha256:90cbccde472f62b2fba61a2ddcbf9d5928b7dcbbeb76c4e0611ab6403539820b

Observation 02788e8c-96c1-443e-a27c-93e446f66385 · outbound

This paper cites One-loop Effective Action up to any Mass-dimension for Non-degenerate Scalars and Fermions including Light-Heavy Mixing.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials One-loop Effective Action up to any Mass-dimension for Non-degenerate Scalars and Fermions including Light-Heavy Mixing

Reference 44

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source=pdf_text observed=2026-08-06T11:34:07.412780Z digest=sha256:e23c783a8a2bc242039e15f4dc025ecd14212f701fa996fc933d3092a0d5bc1e

Observation 9622e650-a787-4b39-8734-980e6965e87b · outbound

This paper cites Renormalization of Scalar and Fermion Interacting Field Theory for Arbitrary Loop: Heat-Kernel Approach.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Renormalization of Scalar and Fermion Interacting Field Theory for Arbitrary Loop: Heat-Kernel Approach

Reference 45

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source=pdf_text observed=2026-08-06T11:34:07.459182Z digest=sha256:4869432f4e4a65b8d0f1354babdbd409941b60e0715254d96823882aee03884c

Observation 24f780cf-6aa4-4ea1-947b-817dcd8b98dd · outbound

This paper cites Adhikary, J.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Adhikary, J

Reference 46

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raw_fallback, observed 2026-08-06T11:34:09.099387Z

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source=pdf_text observed=2026-08-06T11:34:07.501114Z digest=sha256:347346bc66703b040a266cb48b7a0a03ff487a9cdcbd038b2d644924f6675ba5

Observation d49eb5be-cd7a-4867-a959-440476d598d2 · outbound

This paper cites Electroweak Scalar Effects Beyond Dimension-6 in SMEFT.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Electroweak Scalar Effects Beyond Dimension-6 in SMEFT

Reference 47

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source=pdf_text observed=2026-08-06T11:34:07.565327Z digest=sha256:179fef9ccc30f01882ff7c7b516657da3991bf5737c36439630ec0f84eba521d

Observation 9abd4a69-e7b8-4b25-923f-9b15286520dc · outbound

This paper cites Inflation without gauge redundancy.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Inflation without gauge redundancy

Reference 48

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local_arxiv, observed 2026-08-06T11:34:08.865675Z

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source=pdf_text observed=2026-08-06T11:34:07.606681Z digest=sha256:5848ccfcbba342c076bf9ec487d56d628c2d4b22dcede5b09560339de69681c4

Observation 0981fe37-bacf-43eb-9db3-49357f5224da · outbound

This paper cites Fukuda and T.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Fukuda and T

Reference 49

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source=pdf_text observed=2026-08-06T11:34:07.692201Z digest=sha256:6a51e42e37a241956155bb9db0882074b0cc844391449ff58e5fd7c96400bc05

Observation cffb52f0-1c90-4ca2-a504-ec7e3d8b2ae0 · outbound

This paper cites Consistent Use of the Standard Model Effective Potential.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Consistent Use of the Standard Model Effective Potential

Reference 50

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source=pdf_text observed=2026-08-06T11:34:07.735716Z digest=sha256:fc4f08b558ba6a917da04906e1da0fad12c844767b0076f288b5a8462e411601

Observation 16fff9b3-f889-46b6-b176-3aa865a5c91e · outbound

This paper cites Gauge-Independent Scales Related to the Standard Model Vacuum Instability.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Gauge-Independent Scales Related to the Standard Model Vacuum Instability

Reference 51

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source=pdf_text observed=2026-08-06T11:34:07.795898Z digest=sha256:1765fe38aa18117f0fde7e0578a7d503633710d7c4005e64953f17bfe4423838

Observation f2ad4380-8226-41f1-81af-ac7d376277ba · outbound

This paper cites Taming the Goldstone contributions to the effective potential.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Taming the Goldstone contributions to the effective potential

Reference 52

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source=pdf_text observed=2026-08-06T11:34:07.882570Z digest=sha256:ba02554238cec8f501895e84a03cc5f0567fab8fbc30ea3a92ea016657c4179d

Observation 6ec0c045-2d57-4b3d-a183-a004d941b787 · outbound

This paper cites an unresolved cited work.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Unresolved cited work

Reference 53

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source=pdf_text observed=2026-08-06T11:34:07.941992Z digest=sha256:6bf9ce9894c0b8b98a5bd75da707e004d3268e9d12161c5fb85adfe7aa4e9f8f

Observation c8165229-33b8-48f5-a5a5-79371ec26ac0 · outbound

This paper cites an unresolved cited work.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Unresolved cited work

Reference 54

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source=pdf_text observed=2026-08-06T11:34:08.046901Z digest=sha256:92a3a2a1cba21c4fccb945678d55eb71decfd28a1d221edef718cb470f4c1de8

Observation 95337301-a620-40e2-81d3-2a039e8d922f · outbound

This paper cites an unresolved cited work.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Unresolved cited work

Reference 55

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source=pdf_text observed=2026-08-06T11:34:08.115251Z digest=sha256:a6b70674ea27afea05e836cec8b6df7da0adbcb1bae41f237b07cc8684a499ac

Observation 6368fd28-4b81-4fc0-8ca4-344a69914d61 · outbound

This paper cites Dolan and R.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Dolan and R

Reference 56

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source=pdf_text observed=2026-08-06T11:34:08.167099Z digest=sha256:957113e8a3ecdd48dc6ebe204ea815641a555b91a11f4b521223df3307861a2c

Observation dc2037bc-b595-4fbf-8dbb-cb442c82dd3e · outbound

This paper cites The thermal heat kernel expansion and the one-loop effective action of QCD at finite temperature.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials The thermal heat kernel expansion and the one-loop effective action of QCD at finite temperature

Reference 57

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source=pdf_text observed=2026-08-06T11:34:08.232036Z digest=sha256:23c1cecc430a673e0c8e041b423bcdac06d119820f30997be0935e9c4b1572bc

Observation e664eb30-2870-4019-8f41-de31fa0ecf63 · outbound

This paper cites One Loop Thermal Effective Action.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials One Loop Thermal Effective Action

Reference 58

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source=pdf_text observed=2026-08-06T11:34:08.320449Z digest=sha256:5584cfe9f853590caa3058d597b6fd74c65d68fe795e417eb7b072e71523dfc7

Observation c1035733-e51b-4bbd-a4f9-b0b5d95fa50d · outbound

This paper cites Derivative expansion of the heat kernel at finite temperature.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials Derivative expansion of the heat kernel at finite temperature

Reference 59

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source=pdf_text observed=2026-08-06T11:34:08.379333Z digest=sha256:66f31005b26bdb075a8da843aaf6a935feda2f907e1c9d119c826b3930435558

Observation 548d4d4d-b0cd-45d5-acb6-b3812cfc4903 · outbound

This paper cites On the gauge dependence of the Standard Model vacuum instability scale.

Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials On the gauge dependence of the Standard Model vacuum instability scale

Reference 60

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source=pdf_text observed=2026-08-06T11:34:08.523315Z digest=sha256:e0fb918209b65def5666c214251575951e8bedf34961c7437390df1e429fab49

Pith citing papers

Observation 5c2cc641-9787-45f3-ae89-ffca29601105 · inbound

Beyond the Daisy Chain: Running and the 3D EFT View of Supercooled Phase Transitions cites this paper.

Beyond the Daisy Chain: Running and the 3D EFT View of Supercooled Phase Transitions Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials

Reference 111

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source=pdf_text observed=2026-08-04T00:09:34.924656Z digest=sha256:13dafa737a7da0aea3acac59547c5c0d78892c44978a77202c9c27520aa59e9c

Observation 1239c9a2-bef7-4a7e-a24d-951a35e2822b · inbound

Background Fields Meet the Heat Kernel: Gauge Invariance and RGEs without diagrams cites this paper.

Background Fields Meet the Heat Kernel: Gauge Invariance and RGEs without diagrams Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials

Reference 17

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arxiv_id, observed 2026-05-10T22:55:49.693461Z

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source=pdf_text observed=2026-05-10T19:28:31.541517Z digest=sha256:de84ab8dda23f796c863b42a892960c3980d0b81dc56014afff1baf5666dad3f

Observation 10a7b370-f8b0-4d74-b079-04fd6cc598f9 · inbound

Finite-temperature operator basis on $\mathbb{R}^3 \times S^1$ for SMEFT cites this paper.

Finite-temperature operator basis on $\mathbb{R}^3 \times S^1$ for SMEFT Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials

Reference 39

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arxiv_id, observed 2026-05-09T06:30:40.257923Z

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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=2026-05-08T18:24:51.004930Z digest=sha256:8d53d8e7bc4b4aa5d6246e11a38f06d0d5bb61bf45ddf1ac483a5ab0604adde5

Observation 2f492453-ffe3-4fc9-81a8-249edba04168 · inbound

Higher-dimensional operators and Polyakov loop in hot Scalar QED from the heat kernel cites this paper.

Higher-dimensional operators and Polyakov loop in hot Scalar QED from the heat kernel Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials

Reference 28

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arxiv_id, observed 2026-07-03T02:37:34.785185Z

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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=2026-06-27T15:47:26.499632Z digest=sha256:3482fbd30ccd979e40a407c46f989e0b419e5125d3d35a85689a3f4870d2453c

Observation 9e953154-d99d-4380-9696-3fc8059778f9 · inbound

Polyakov Loops Tame Phase Transitions cites this paper.

Polyakov Loops Tame Phase Transitions Gauge Choices, Infrared Pitfalls, and Thermal Effects in Effective Potentials

Reference 59

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local_arxiv, observed 2026-07-08T13:44:54.986857Z

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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=2026-07-08T13:36:54.128276Z digest=sha256:6f918c29a6f352d701ce8d3f33a75dcb5c8ea1c53c72877af8316dd887f74b51