Results from a Prototype TES Detector for the Ricochet Experiment
physics.ins-det
/ Authors
Ricochet Collaboration, C. Augier, G. Baulieu, V. Belov, L. Bergé, J. Billard, G. Bres, J-. L. Bret, A. Broniatowski, M. Calvo
and 81 more authors
A. Cazes, D. Chaize, M. Chala, C. L. Chang, M. Chapellier, L. Chaplinsky, G. Chemin, R. Chen, J. Colas, E. Cudmore, M. De Jesus, P. de Marcillac, L. Dumoulin, O. Exshaw, S. Ferriol, E. Figueroa-Feliciano, J. -B. Filippini, J. A. Formaggio, S. Fuard, K. Gannon, J. Gascon, A. Giuliani, J. Goupy, C. Goy
/ Abstract
Coherent elastic neutrino-nucleus scattering (CE$ν$NS) offers valuable sensitivity to physics beyond the Standard Model. The Ricochet experiment will use cryogenic solid-state detectors to perform a precision measurement of the CE$ν$NS spectrum induced by the high neutrino flux from the Institut Laue-Langevin nuclear reactor. The experiment will employ an array of detectors, each with a mass of $\sim$30 g and a targeted energy threshold of 50 eV. Nine of these detectors (the "Q-Array") will be based on a novel Transition-Edge Sensor (TES) readout style, in which the TES devices are thermally coupled to the absorber using a gold wire bond. We present initial characterization of a Q-Array-style detector using a 1 gram silicon absorber, obtaining a baseline root-mean-square resolution of less than 40 eV.