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Herrero-Valea, R

4 Pith papers cite this work. Polarity classification is still indexing.

4 Pith papers citing it

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background 2

citation-polarity summary

fields

hep-th 4

years

2026 2 2025 2

verdicts

UNVERDICTED 4

roles

background 2

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background 2

representative citing papers

Negative running of gravitational positivity

hep-th · 2026-03-16 · unverdicted · novelty 7.0

Non-minimal three-point interactions induce negative one-loop running of Wilson coefficients in gravitational EFTs, yet graviton loops generate positive IR contributions that dominate the bounds after smearing if the species number is bounded.

Positivity with Long-Range Interactions

hep-th · 2025-12-15 · unverdicted · novelty 7.0

Defines IR-finite amplitudes M_E that preserve analyticity and unitarity to derive positivity bounds on EFTs including electromagnetism and gravity in D=4.

citing papers explorer

Showing 4 of 4 citing papers.

  • Negative running of gravitational positivity hep-th · 2026-03-16 · unverdicted · none · ref 23

    Non-minimal three-point interactions induce negative one-loop running of Wilson coefficients in gravitational EFTs, yet graviton loops generate positive IR contributions that dominate the bounds after smearing if the species number is bounded.

  • Positivity with Long-Range Interactions hep-th · 2025-12-15 · unverdicted · none · ref 117

    Defines IR-finite amplitudes M_E that preserve analyticity and unitarity to derive positivity bounds on EFTs including electromagnetism and gravity in D=4.

  • Sampling the Graviton Pole and Deprojecting the Swampland hep-th · 2026-04-16 · unverdicted · none · ref 28

    A sampling-based bootstrap for graviton poles in EFTs yields non-projective bounds that fix the EFT cutoff scale relative to the Planck mass, with M/M_P ≲ 7.8 in D=5.

  • Positivity bounds from thermal field theory entropy hep-th · 2025-09-08 · unverdicted · none · ref 26

    Thermodynamic consistency in thermal scalar EFTs requires the Wilson coefficient of the leading dimension-8 operator to be strictly positive.