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Testing neutrino electromagnetic properties at current and future dark matter experiments

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arxiv 2309.17380 v2 pith:TWDAXXY7 submitted 2023-09-29 hep-ph hep-ex

Testing neutrino electromagnetic properties at current and future dark matter experiments

classification hep-ph hep-ex
keywords neutrinoboundschargeexperimentsanalysiscurrentdarkdarwin
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We analyze data from the dark matter direct detection experiments PandaX-4T, LUX-ZEPLIN and XENONnT to place bounds on neutrino electromagnetic properties (magnetic moments, millicharges, and charge radii). We also show how these bounds will improve at the future facility DARWIN. In our analyses we implement a more conservative treatment of background uncertainties than usually done in the literature. From the combined analysis of all three experiments we can place very strong bounds on the neutrino magnetic moments and on the neutrino millicharges. We show that even though the bounds on the neutrino charge radii are not very strong from the analysis of current data, DARWIN could provide the first measurement of the electron neutrino charge radius, in agreement with the Standard Model prediction.

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    Combined solar CEνNS data from XENONnT, PandaX-4T, and LZ yield competitive constraints on vector NSI and light mediators and a weak mixing angle measurement at low momentum transfer.