11 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…
Probing the Solar B Neutrino Fog with XENONnT
E. Aprile, J. Aalbers, K. Abe +176
We report a 3.3 measurement of coherent elastic neutrino-nucleus scattering from solar B neutrinos using a 6.77 tyr exposure from the XENONnT experiment, inferring…
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…
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…
Defect Formation in NaI Crystals: A Novel Pathway to Dark Matter Detection
G. Angloher, M. R. Bharadwaj, A. Böhmer +44
Sodium iodide (NaI) is a widely used scintillator in direct dark matter searches. In particular, NaI-based cryogenic scintillating calorimeters have emerged as promising candidates…
WIMP Dark Matter Search using a 3.1 Tonne-Year Exposure of the XENONnT Experiment
E. Aprile, J. Aalbers, K. Abe +175
We report on a search for weakly interacting massive particle (WIMP) dark matter (DM) via elastic DM-xenon-nucleus interactions in the XENONnT experiment. We combine datasets from…