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Chiral oscillations in finite time quantum field theory

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arxiv 2501.17111 v1 pith:OXAEUNC5 submitted 2025-01-28 hep-ph hep-th

classification hep-phhep-th
keywords chiraloscillationsperturbativefieldchiralitydecayformulaprocesses
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abstract

We demonstrate how chiral oscillations of a massive Dirac field can be described within quantum field theory using a finite-time interaction picture approach, where the mass term in the Lagrangian is treated as a perturbative coupling between massless fields of definite chirality. We derive the formula for chiral oscillations at the fourth order in the perturbative expansion, obtaining a result consistent with the formula derived by means of other methods. Furthermore, we illustrate how the perturbative framework of chiral oscillations can effectively describe production processes where an electron must exhibit both left chirality and positive helicity, as in decay $\pi^- \to e^- + {\bar \nu}_e$. Finally, we argue that, in this perturbative view, chiral oscillations are also essential for detecting the decay products in such processes.

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Cited by 1 Pith paper

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  1. Scattering off unstable states

    hep-ph 2025-07 conditional novelty 6.0 of 10

    A finite-time QFT treatment removes the t-channel singularity that appears when an unstable particle scatters off another particle.

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