collaborators

6 papers

nucl-ex2026

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…

nucl-ex2026

Sensitivity of the CUPID experiment to decay of Mo

K. Alfonso, A. Armatol, C. Augier +189

CUPID is a next-generation bolometric experiment to search for neutrinoless double-beta decay () of Mo using LiMoO scintillating crystals. It will operate…

physics.ins-det2025

CUPID, the CUORE Upgrade with Particle IDentification

The CUPID Collaboration, K. Alfonso, A. Armatol +190

CUPID, the CUORE Upgrade with Particle IDentification, is a next-generation experiment to search for neutrinoless double beta decay () and other rare events using enriched…

physics.ins-det2025

Innovating Bolometers' Mounting: A Gravity-Based Approach

The CUPID Collaboration, K. Alfonso, A. Armatol +190

Cryogenic calorimeters, also known as bolometers, are among the leading technologies for searching for rare events. The CUPID experiment is exploiting this technology to deploy a t…

physics.ins-det2025

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…

nucl-ex2025

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…