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Energy calibration of the NEXT-White detector with 1% resolution near Q_(ββ) of ¹³⁶Xe

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arxiv 1905.13110 v3 pith:HBB62UGH submitted 2019-05-30 physics.ins-det

Energy calibration of the NEXT-White detector with 1% resolution near Q_(ββ) of ¹³⁶Xe

classification physics.ins-det
keywords energybetaresolutionxenonbeta0detectornext-whitesearches
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Excellent energy resolution is one of the primary advantages of electroluminescent high pressure xenon TPCs, and searches for rare physics events such as neutrinoless double-beta decay ($\beta\beta0\nu$) require precise energy measurements. Using the NEXT-White detector, developed by the NEXT (Neutrino Experiment with a Xenon TPC) collaboration, we show for the first time that an energy resolution of 1% FWHM can be achieved at 2.6 MeV, establishing the present technology as the one with the best energy resolution of all xenon detectors for $\beta\beta0\nu$ searches.

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  1. Electroluminescence Yield Measurements in Xenon Gas with the NEXT-DEMO++ Detector

    physics.ins-det 2026-04 unverdicted novelty 5.0

    Electroluminescence yield measurements in xenon reveal a modest 5% change in the slope of the reduced yield Y/p above 5 bar pressure.