2020
DOI: 10.1103/physrevd.101.055009
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Probing muonic charged current nonstandard interactions at decay-at-rest facilities in conjunction with T2HK

Abstract: The muon decay-at-rest (μ-DAR) facility provides us with an ideal platform to probe purely muonic charged-current nonstandard neutrino interactions (NSIs). We propose to probe this class of NSI effects using antineutrinos from a μ-DAR source in conjunction with neutrinos from the future Tokai to Kamioka superbeam experiment with megaton hyper Kamiokande detector (T2HK). Even though muonic NSIs are absent in neutrino production at T2HK, we show that our proposed hybrid setup comprising μ-DAR and T2HK helps in a… Show more

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Cited by 10 publications
(2 citation statements)
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“…This fact amplifies the need for a correct treatment of quadratic terms, as ensured by our QFT formalism. To discuss whether the above-given QFT result can be matched to the QM-NSI formalism one needs to specify how the latter describes (anti)neutrino production from muon decay [6,44,45]. Works carried out within the "non-unitary mixing matrix" setup [6] introduce in eq.…”
Section: Jhep11(2020)048 6 Muon Decaymentioning
confidence: 99%
“…This fact amplifies the need for a correct treatment of quadratic terms, as ensured by our QFT formalism. To discuss whether the above-given QFT result can be matched to the QM-NSI formalism one needs to specify how the latter describes (anti)neutrino production from muon decay [6,44,45]. Works carried out within the "non-unitary mixing matrix" setup [6] introduce in eq.…”
Section: Jhep11(2020)048 6 Muon Decaymentioning
confidence: 99%
“…f f ,Y αβ and f,Y αβ define the strength of NSIs respectively, α, β ∈ {e, µ, τ }, f denote charged leptons or quarks and P Y is chiral projection operator(P L or P R ). CC NSI modifies the neutrino production and detection through its effect on processes such as muon decay and inverse beta decay [6][7][8]. From those processes severe bound can be obtained [9].…”
Section: Introductionmentioning
confidence: 99%