paper

Integration of Silica in G4CMP for Phonon Simulations: Framework and Tools for Material Integration

arXiv:2510.06595 · doi:10.1109/TASC.2026.3651428; 10.1109/TASC.2026.3677456

Abstract

Superconducting detectors with sub-eV energy resolution have demonstrated success setting limits on Beyond the Standard Model (BSM) physics due to their unique sensitivity to low-energy events. G4CMP, a Geant4-based extension for condensed matter physics, provides a comprehensive toolkit for modeling phonon and charge dynamics in cryogenic materials. This paper introduces a technical formalism to support the superconducting qubit and low-threshold detector community in implementing phonon simulations in custom materials into the G4CMP. As a case study, we present the results of a detailed analysis of silica phonon transport properties relevant for simulating substrate backgrounds in Beryllium Electron capture in Superconducting Tunnel junctions (BeEST)-style experiments using G4CMP. Additionally, Python-based tools were developed to aid users in implementing their own materials and are available on the G4CMP repository.

6 pages, 4 figures, LTD25 conference proceeding submission

Integration of Silica in G4CMP for Phonon Simulations: Framework and Tools for Material Integration · wovepaper