Gaseous time projection chambers for rare event detection: Results from the T-REX project. I. Double beta decay
I. G. Irastorza, F. Aznar, J. Castel, S. Cebri\'an, T. Dafni, J., Gal\'an, J. A. Garc\'ia, J. G. Garza, H. G\'omez, D. C. Herrera, F. J. Iguaz,, G. Luz\'on, H. Mirallas, E. Ruiz, L. Segu\'i, A. Tom\'as

TL;DR
This paper reports on the development and testing of gaseous Micromegas-read TPCs with high-pressure xenon for double beta decay detection, showing promising energy resolution, background discrimination, and scalability.
Contribution
It demonstrates the feasibility and advantages of using Micromegas-read HPXe TPCs for double beta decay searches, including improved resolution and background rejection.
Findings
Achieved energy resolution of ~3% FWHM at Qββ
Reduced electron diffusion by a factor of 10 with TMA additive
Demonstrated effective topological background discrimination
Abstract
As part of the T-REX project, a number of R&D and prototyping activities have been carried out during the last years to explore the applicability of gaseous Micromegas-read TPCs in rare event searches like double beta decay (DBD), axion research and low-mass WIMP searches. In both this and its companion paper, we compile the main results of the project and give an outlook of application prospects for this detection technique. While in the companion paper we focus on axions and WIMPs, in this paper we focus on the results regarding the measurement of the DBD of Xe in a high pressure Xe (HPXe) TPC. Particularly relevant are the results obtained in Xe + TMA mixtures with microbulk Micromegas, showing very promising results in terms of gain, stability of operation, and energy resolution at pressures up to 10 bar. TMA at levels of 1\% reduces electron diffusion by a factor of…
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