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Review of Nucleon Decay Searches at Super-Kamiokande

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arxiv 1605.03235 v1 pith:L5Z7YC52 submitted 2016-05-10 hep-ex hep-ph

classification hep-exhep-ph
keywords nucleondecaysearchesbaryonnumberreviewrightarrowsuper-kamiokande
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Baryon number violation appears in many contexts. It is a requirement for baryogenesis and is a consequence of Grand Unified Theories (GUTs), which predict nucleon decay. Nucleon decay searches provide the most direct way to test baryon number conservation and also serve as a unique probe of GUT scale physics around $10^{14-16}$ GeV. Such energies cannot be reached directly by accelerators. However, they can be explored indirectly at large underground water Cherenkov (WC) experiments, which due to the size of their fiducial volume are highly sensitive to nucleon decays. We review searches for baryon number violating processes at the state of the art WC detector, the Super-Kamiokande. Analyses of the typically dominant non-SUSY and SUSY nucleon decay channels such as $p \rightarrow (e^+, \mu^+) \pi^0$ and $p \rightarrow \nu K^+$, as well as more exotic searches, will be discussed. Presented studies set the world's best limits, which circumvent the allowed parameter space of theoretical models

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Cited by 2 Pith papers

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  1. Chiral perturbation theory for baryon-number-violating nucleon decay into a vector meson

    hep-ph 2025-06 conditional novelty 7.0 of 10

    The authors derive the leading-order chiral Lagrangian for BNV nucleon decays into octet vector mesons and use it to relate vector-meson and pseudoscalar decay constraints.

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    A community whitepaper makes the case that ESS and neutron sources offer a competitive, complementary route to search for new physics, with proposed experiments in neutron decay, EDM, baryon number violation, neutrino...

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