English

Strong Enhancement of Electromagnetic Shower Development in Oriented Scintillating Crystals and Implications for Particle Detectors

High Energy Physics - Experiment 2025-10-31 v3

Abstract

A particle traversing a crystal aligned with one of its crystallographic axes experiences a strong electromagnetic field that is constant along the direction of motion over macroscopic distances. For e±e^\pm and γ\gamma-rays with energies above a few GeV\mathrm{GeV}, this field is amplified by the Lorentz boost, to the point of exceeding the Schwinger critical field E01.32×1016 V/cm\mathcal{E}_0 \sim 1.32 \times 10^{16}~\mathrm{V/cm}. In this regime, nonlinear quantum-electrodynamical effects occur, such as the enhancement of intense electromagnetic radiation emission and pair production, so that the electromagnetic shower development is accelerated and the effective shower length is reduced compared to amorphous materials. We have investigated this phenomenon in lead tungstate (PbWO4_4), a high-ZZ scintillator widely used in particle detection. We have observed a substantial increase in scintillation light at small incidence angles with respect to the main lattice axes. Measurements with 120120-GeV\mathrm{GeV} electrons and γ\gamma-rays between 55 and 100 GeV100~\mathrm{GeV} demonstrate up to a threefold increase in energy deposition in oriented samples. These findings challenge the current models of shower development in crystal scintillators and could guide the development of next-generation accelerator- and space-borne detectors.

Keywords

Cite

@article{arxiv.2404.12016,
  title  = {Strong Enhancement of Electromagnetic Shower Development in Oriented Scintillating Crystals and Implications for Particle Detectors},
  author = {Mattia Soldani and Pietro Monti-Guarnieri and Alessia Selmi and Nicola Argiolas and Luca Bomben and Claudia Brizzolari and Nicola Canale and Stefano Carsi and Nikolaos Charitonidis and Davide De Salvador and Vincenzo Guidi and Viktar Haurylavets and Mikhail Korzhik and Giulia Lezzani and Alexander Lobko and Lorenzo Malagutti and Sofia Mangiacavalli and Valerio Mascagna and Andrea Mazzolari and Vitaly Mechinsky and Matthew Moulson and Riccardo Negrello and Gianfranco Paternò and Leonardo Perna and Christian Petroselli and Michela Prest and Marco Romagnoni and Federico Ronchetti and Giosué Saibene and Francesco Sgarbossa and Alexei Sytov and Viktor Tikhomirov and Erik Vallazza and Laura Bandiera},
  journal= {arXiv preprint arXiv:2404.12016},
  year   = {2025}
}