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The Mikheyev-Smirnov-Wolfenstein Matter Potential at the One-loop Level in the Standard Model

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arxiv 2307.04685 v2 pith:N3C6WVVZ submitted 2023-07-10 hep-ph hep-ex

classification hep-phhep-ex
keywords matterone-looppotentialneutrinosantineutrinosmassesmikheyev-smirnov-wolfensteinmodel
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

When neutrinos are propagating in ordinary matter, their coherent forward scattering off background particles results in the so-called Mikheyev-Smirnov-Wolfenstein (MSW) matter potential, which plays an important role in neutrino flavor conversions. In this paper, we present a complete one-loop calculation of the MSW matter potential in the Standard Model (SM). First, we carry out the one-loop renormalization of the SM in the on-shell scheme, where the electromagnetic fine-structure constant $\alpha$, the weak gauge-boson masses $m^{}_W$ and $m^{}_Z$, the Higgs-boson mass $m^{}_h$ and the fermion masses $m^{}_f$ are chosen as input parameters. Then, the finite corrections to the scattering amplitudes of neutrinos with the electrons and quarks are calculated, and the one-loop MSW matter potentials are derived. Adopting the latest values of all physical parameters, we find that the relative size of one-loop correction to the charged-current matter potential of electron-type neutrinos or antineutrinos turns out to be $6\%$, whereas that to the neutral-current matter potential of all-flavor neutrinos or antineutrinos can be as large as $8\%$. The calculations are also performed in the $\overline{\rm MS}$ scheme and compared with previous results in the literature.

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  1. Towards a detection of reactor $\overline{\nu}^{}_e \to \overline{\nu}^{}_\mu$ and $\overline{\nu}^{}_e \to \overline{\nu}^{}_\tau$ oscillations with possible CP violation

    hep-ph 2025-08 conditional novelty 6.0 of 10

    A proof-of-concept study shows that elastic antineutrino-electron scattering at JUNO could in principle detect reactor appearance and probe CP violation, but the CP signal is tiny.

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