Quantum Anomalies and Parity-odd CFT Correlators for Chiral States of Matter

Claudio Corianó, Stefano Lionetti
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Abstract

Chiral currents influence the parity-odd sector of CFT correlators in momentum space, playing a crucial role in the evolution of the quark-gluon plasma in the early universe. We demonstrate that these parity-odd interactions, which couple quarks and gluons to gravitons, can be fully determined in terms of their anomaly content by solving the conformal constraints in momentum space. This process involves a single nonlocal, massless axion-like interaction in the longitudinal channel, which remains protected against thermal and finite density effects.
物质手性态的量子反常和奇偶校验 CFT 关联器
手性电流影响着动量空间中CFT相关子的奇偶性-偶性扇区,在早期宇宙中夸克-胶子等离子体的演化中起着至关重要的作用。我们证明了这些将夸克和胶子与引力子耦合在一起的奇偶性-反常相互作用,可以通过求解动量空间中的共形约束来完全确定其反常含量。这一过程涉及纵向通道中单一的非局域、无质量的类轴子相互作用,它不受热效应和有限密度效应的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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