Bottom-up open EFT for non-Abelian gauge theory with dynamical color environment

A bstract We develop a bottom-up open effective field theory (EFT) for non-Abelian gauge theories within the Schwinger–Keldysh formalism. Instead of integrating out the environment completely and starting from a nonlocal influence functional, we retain the slow environmental response variables explicitly and construct a local system-environment EFT. The environmental sector is described by a dynamical color-frame variable, Stückelberg-like field, and an associated color-current sector, which gives the nontrivial interactions and dissipation between the system and the environment. The resulting construction provides a gauge-covariant Markov embedding of nonlocal and non-Markovian color response. After integrating out the retained environmental variables with retarded boundary conditions, the reduced system theory acquires nonlocal dissipative kernels and stochastic sources. We show that the hard thermal loop response arises naturally as a particular realization of the retained environmental response. Our framework provides a local open-EFT description of color transport, memory effects, and fluctuation-dissipation structure in non-Abelian plasmas, and offers a systematic starting point for dissipative Yang–Mills EFTs with dynamical environments.

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Publication Details

Journal
Journal of High Energy Physics
Published
2026-09-17
DOI
https://doi.org/10.1007/jhep09(2026)197
Primary Topic
High-Energy Particle Collisions Research
Type
article
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Bottom-up open EFT for non-Abelian gauge theory with dynamical color environment

Yoshihiko Abe, Kanji Nishii
Journal of High Energy Physics
High-Energy Particle Collisions Research
article

Bottom-up open EFT for non-Abelian gauge theory with dynamical color environment

Yoshihiko Abe, Kanji Nishii
article en

Abstract

A bstract We develop a bottom-up open effective field theory (EFT) for non-Abelian gauge theories within the Schwinger–Keldysh formalism. Instead of integrating out the environment completely and starting from a nonlocal influence functional, we retain the slow environmental response variables explicitly and construct a local system-environment EFT. The environmental sector is described by a dynamical color-frame variable, Stückelberg-like field, and an associated color-current sector, which gives the nontrivial interactions and dissipation between the system and the environment. The resulting construction provides a gauge-covariant Markov embedding of nonlocal and non-Markovian color response. After integrating out the retained environmental variables with retarded boundary conditions, the reduced system theory acquires nonlocal dissipative kernels and stochastic sources. We show that the hard thermal loop response arises naturally as a particular realization of the retained environmental response. Our framework provides a local open-EFT description of color transport, memory effects, and fluctuation-dissipation structure in non-Abelian plasmas, and offers a systematic starting point for dissipative Yang–Mills EFTs with dynamical environments.

Journal of High Energy PhysicsVol. 2026(9)
Keio University (JP)
Life in Land
Openalex Percentile: Top 57%
High-Energy Particle Collisions Research
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Bottom-up open EFT for non-Abelian gauge theory with dynamical color environment — Yoshihiko Abe, Kanji Nishii · Journal of High Energy Physics (2026) | TGRS Research Map | TGRS