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Signal identification with Kalman Filter towards background-free neutrinoless double beta decay searches in gaseous detectors

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arxiv 2102.08221 v2 pith:7YE4DOJU submitted 2021-02-16 physics.ins-det hep-ex

classification physics.ins-dethep-ex
keywords betadecaybackgroundbackground-freedetectorsdoubleenergyfilter
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Particle tracks and differential energy loss measured in high pressure gaseous detectors can be exploited for event identification in neutrinoless double beta decay~($0\nu \beta \beta$) searches. We develop a new method based on Kalman Filter in a Bayesian formalism (KFB) to reconstruct meandering tracks of MeV-scale electrons. With simulation data, we compare the signal and background discrimination power of the KFB method assuming different detector granularities and energy resolutions. Typical background from $^{232}$Th and $^{238}$U decay chains can be suppressed by another order of magnitude than that in published literatures, approaching the background-free regime. For the proposed PandaX-III experiment, the $0\nu \beta \beta$ search half-life sensitivity at the 90\% confidence level would reach $2.7 \times 10^{26}$~yr with 5-year live time, a factor of 2.7 improvement over the initial design target.

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