22 papers
Optimization studies of silicon remoTES cryogenic calorimeters
G. Angloher, M. R. Bharadwaj, A. Boehmer +42
The remoTES design, developed within the COSINUS experiment, enables a broader range of materials to be operated as cryogenic calorimeters read out with Transition Edge Sensors (TE…
Sensitivity enhancement techniques for cryogenic calorimeters in the NUCLEUS experiment
M. Cappelli, A. Wallach, H. Abele +62
Phonon-mediated cryogenic calorimeters find application in rare event searches due to their intrinsically low energy threshold. Achieving the best sensitivity for this kind of dete…
Prospect of the NUCLEUS Experiment at Chooz for Coherent Elastic Neutrino-Nucleus Scattering and New Physics Searches
H. Abele, G. Angloher, B. Arnold +67
The NUCLEUS experiment aims to measure coherent elastic neutrino-nucleus scattering (CENS) at unprecedentedly low nuclear recoil energies using gram-scale cryogenic calorimeters…
Cosmic Ray Boosted Dark Matter in COSINUS: Modeling and Constraints
G. Angloher, M. R. Bharadwaj, A. Böhmer +41
Direct detection of nuclear recoils due to sub-GeV dark matter is challenging because of the small kinetic energy of the light dark matter particles. Although limits down to a few…
Characterization of the Low Energy Excess using a NUCLEUS detector
H. Abele, G. Angloher, B. Arnold +62
The NUCLEUS experiment aims to detect coherent elastic neutrino-nucleus scattering of reactor antineutrinos using low-threshold, gram-scale cryogenic calorimeters. Similar to other…
ImpCresst -- A versatile simulation tool focusing on solid-state detectors at keV energies
G. Angloher, S. Banik, A. Bento +57
We present ImpCresst, a Geant4-based Monte Carlo tool to simulate backgrounds from natural and cosmogenic radionuclides, and calibration signals in solid-state detectors and their…