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arxiv: 1201.4852 · v2 · submitted 2012-01-23 · ✦ hep-ph · hep-lat· nucl-th

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Hadronic Parity Violation at Next-to-Leading Order

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classification ✦ hep-ph hep-latnucl-th
keywords orderhadronicnext-to-leadingparityscaleselementsmatrixoperators
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The flavor-conserving non-leptonic weak interaction can be studied experimentally through the observation of parity violation in nuclear and few-body systems. At hadronic scales, matrix elements of parity-violating four-quark operators ultimately give rise to the parity violating couplings between hadrons, and such matrix elements can be calculated non-perturbatively using lattice QCD. In this work, we investigate the running of isovector parity-violating operators from the weak scale down to hadronic scales using the renormalization group. We work at next-to-leading order in the QCD coupling, and include both neutral-current and charged-current interactions. At this order, results are renormalization scheme dependent, and we utilize 't Hooft-Veltman dimensional regularization. The evolution of Wilson coefficients at leading and next-to-leading order is compared. Next-to-leading order effects are shown to be non-negligible at hadronic scales.

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  1. Hadronic parity violation: successes, challenges, and future prospects

    nucl-th 2026-05 unverdicted novelty 2.0

    A review of hadronic parity violation covers observed effects, theoretical and experimental progress, and prospects for extending few-nucleon precision studies to nuclei and new physics searches.