Measurement of the Xe two-neutrino double beta decay half-life via direct background subtraction in NEXT
arXiv:2111.11091 · doi:10.1103/PhysRevC.105.055501
Abstract
We report a measurement of the half-life of the Xe two-neutrino double beta decay performed with a novel direct background subtraction technique. The analysis relies on the data collected with the NEXT-White detector operated with Xe-enriched and Xe-depleted xenon, as well as on the topology of double-electron tracks. With a fiducial mass of only 3.5 kg of Xe, a half-life of is derived from the background-subtracted energy spectrum. The presented technique demonstrates the feasibility of unique background-model-independent neutrinoless double beta decay searches.
9 pages, 7 figures, and 1 appendix
References in corpus (4)
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- Precision Analysis of the Xe Two-Neutrino Spectrum in KamLAND-Zen and Its Impact on the Quenching of Nuclear Matrix Elements
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- Optimization of convolutional neural networks for background suppression in the PandaX-III experiment
- Precise Xe Double Beta Decay Measurement in PandaX-4T with Implications on the Nuclear Matrix Elements and Majorons
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