English

Detection prospects for the second-order weak decays of $^{124}$Xe in multi-tonne xenon time projection chambers

Nuclear Experiment 2020-12-30 v1 High Energy Physics - Experiment Nuclear Theory

Abstract

We investigate the detection prospects for two-neutrino and neutrinoless second order weak decays of 124^{124}Xe -- double electron capture (0/2νECEC0/2\nu\text{ECEC}), electron capture with positron emission (0/2νECβ+0/2\nu\text{EC}\beta^+) and double-positron emission (0/2νβ+β+0/2\nu\beta^+\beta^+) -- in multi-tonne xenon time projection chambers. We simulate the decays in a liquid xenon medium and develop a reconstruction algorithm which uses the multi-particle coincidence in these decays to separate signal from background. This is used to compute the expected detection efficiencies as a function of position resolution and energy threshold for planned experiments. In addition, we consider an exhaustive list of possible background sources and find that they are either negligible in rate or can be greatly reduced using our topological reconstruction criteria. In particular, we draw two conclusions: First, with a half-life of T1/22νECβ+=(1.7±0.6)1023yrT_{1/2}^{2\nu\text{EC}\beta^+} = (1.7 \pm 0.6)\cdot 10^{23}\,\text{yr}, the 2νECβ+2\nu\text{EC}\beta^+ decay of 124^{124}Xe will likely be detected in upcoming Dark Matter experiments (e.g. XENONnT or LZ), and their major background will be from gamma rays in the detector construction materials. Second, searches for the 0νECβ+0\nu\text{EC}\beta^+ decay mode are likely to be background-free, and new parameter space may be within the reach. To this end we investigate three different scenarios of existing experimental constraints on the effective neutrino mass. The necessary 500 kg-year exposure of 124^{124}Xe could be achieved by the baseline design of the DARWIN observatory, or by extracting and using the 124^{124}Xe from the tailings of the nEXO experiment. We demonstrate how a combination of 124^{124}Xe results with those from 0νββ0\nu\beta^-\beta^- searches in 136^{136}Xe could help to identify the neutrinoless decay mechanism.

Keywords

Cite

@article{arxiv.2002.04239,
  title  = {Detection prospects for the second-order weak decays of $^{124}$Xe in multi-tonne xenon time projection chambers},
  author = {Christian Wittweg and Brian Lenardo and Alexander Fieguth and Christian Weinheimer},
  journal= {arXiv preprint arXiv:2002.04239},
  year   = {2020}
}

Comments

17 pages, 7 figures,