Gaseous time projection chambers for rare event detection: Results from the T-REX project. II. Dark matter
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 use of gaseous time projection chambers with Micromegas detectors in the T-REX project for rare event searches, focusing on dark matter detection through axions and WIMPs, demonstrating promising background reduction and sensitivity improvements.
Contribution
It introduces new detector configurations and technical solutions that enhance the sensitivity of gaseous TPCs for dark matter searches, including axion helioscopes and low-mass WIMP detection.
Findings
Achieved background levels as low as 0.8×10^{-6} c keV^{-1}cm^{-2}s^{-1} in CAST.
Projected to reduce background to ~10^{-8} c keV^{-1}cm^{-2}s^{-1} in future setups.
Sensitivity potentially reaching 10^{-44} cm^2 for low-mass WIMPs.
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 Micromegas-read gaseous TPCs in rare event searches like double beta decay (DBD), axion research and low-mass WIMP searches. While in the companion paper we focus on DBD, in this paper we focus on the results regarding the search for dark matter candidates, both axions and WIMPs. Small ultra-low background Micromegas detectors are used to image the x-ray signal expected in axion helioscopes like CAST at CERN. Background levels as low as c keVcms have already been achieved in CAST while values down to c keVcms have been obtained in a test bench placed underground in the Laboratorio Subterr\'aneo de Canfranc. Prospects to consolidate and further reduce these values…
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