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arXiv:2411.00571·v1·High Energy Physics — Theory

Model-independent results on parity violation in the trace anomaly

Rémy Larue🇫🇷 · Jérémie Quevillon🇫🇷 · Roman Zwicky🇬🇧

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Abstract

Anomalous parity violation in four dimensions would be significant for phenomenology (baryogenesis, gravitational waves) and mathematical physics. Over the past decade, there has been a controversy in the literature as to whether free Weyl fermions give rise to (anomalous) parity violation in the trace of the energy momentum tensor; expressed by the Pontryagin densities and in the gravity and the gauge sector respectively. In Ref., we have shown, using path integral methods, that the trace anomaly of a free Weyl fermion does not violate parity (i.e the absence of the Pontryagin density). In a subsequent work we came to the stronger conclusion that for any theory compatible with dimensional regularisation, the Pontryagin-terms are equally absent. It is the \textit{finiteness} of the diffeomorphism, the Lorentz and the gauge anomalies that prevents anomalous parity violation.

Comments: 15 pages, contribution to the 17th Marcel Grossmann Meeting

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