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A Novel Proton Decay Signature at DUNE, JUNO, and Hyper-K
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abstract
Proton decay, although unobserved so far, is a natural expectation when attempting to explain the baryon asymmetry of the universe. $p\to K^+\bar{\nu}$ or $p\to K^+\tilde{\chi}_1^0$, with $\tilde{\chi}_1^0$ a light exotic neutral particle, represent possible decay channels achievable in models of physics beyond the Standard Model, such as the MSSM with trilinear R-parity-violating terms, or the Standard Model extended by a heavy neutral lepton. Among the decay products of these modes, the neutral fermions would typically appear as missing energy in collider searches. The present study considers how such decay modes could be differentiated in experimental settings, as the exotic $\tilde{\chi}_1^0$ may further decay if it is not protected by a symmetry (such as R-parity in the MSSM). We assess the detection prospects of the proposed experiments DUNE, JUNO and Hyper-K in this context.
Forward citations
Cited by 2 Pith papers
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Baryon-number-violating nucleon decays into a dark photon particle
A complete XLEFT basis for nucleon decay into a dark photon is matched to ChPT, yielding width formulas and first recast lifetime bounds from Super-K data.
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Nucleon Decays into Light New Particles in Neutrino Detectors
Nucleon decays into light new particles can hide from water-Cherenkov detectors when the charged partner is slow, while Earth-born fluxes of the decay products could be visible in existing underground detectors.
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