7 papers
A study of neutrinoless double electron capture in Ca from the AMoRE experiment
AMoRE Collaboration, A. Agrawal, V. V. Alenkov +107
The search for neutrinoless double electron capture () provides a sensitive probe of lepton-number violation and the Majorana nature of neutrinos. We investigate t…
Machine Learning on Heterogeneous, Edge, and Quantum Hardware for Particle Physics (ML-HEQUPP)
Julia Gonski, Jenni Ott, Shiva Abbaszadeh +118
The next generation of particle physics experiments will face a new era of challenges in data acquisition, due to unprecedented data rates and volumes along with extreme environmen…
Improved limit on the effective electron neutrino mass with the ECHo-1k experiment
Fabienne Adam, Felix Ahrens, Luis E. Ardila Perez +56
The effective electron neutrino mass can be determined by analyzing the endpoint region of the Ho electron capture spectrum, provided a measurement with high energy resolut…
DELight: a Direct search Experiment for Light dark matter with superfluid helium
Belina von Krosigk, Klaus Eitel, Christian Enss +9
To reach ultra-low detection thresholds necessary to probe unprecedentedly low Dark Matter masses, target material alternatives and novel detector designs are essential. One such t…
Development of MMC-based lithium molybdate cryogenic calorimeters for AMoRE-II
A. Agrawal, V. V. Alenkov, P. Aryal +105
The AMoRE collaboration searches for neutrinoless double beta decay of Mo using molybdate scintillating crystals via low temperature thermal calorimetric detection. The ear…
Improved limit on neutrinoless double beta decay of Mo from AMoRE-I
A. Agrawal, V. V. Alenkov, P. Aryal +105
AMoRE searches for the signature of neutrinoless double beta decay of Mo with a 100 kg sample of enriched Mo. Scintillating molybdate crystals coupled with a metall…