English

Development and Performance Study of Vertical GaN $\alpha$-Particle Detector with High Energy Resolution

Instrumentation and Detectors 2026-04-28 v1 High Energy Physics - Experiment

Abstract

High-energy-resolution GaN α\alpha-particle detectors have significant potential for space radiation, nuclear instrumentation, and harsh-environment applications. However, existing GaN α\alpha-particle detectors still face several key challenges, including reducing the dead-layer thickness, suppressing leakage current under high reverse bias, improving energy resolution, and clarifying the physical mechanism underlying the low-energy tail phenomenon. This study presents a vertical homoepitaxial GaN α\alpha-particle detector integrating a 20-nm ultrathin dead layer and a guard-ring structure. The detector exhibits an ultralow leakage current of 2.195 nA at -200 V and an intrinsic energy resolution of 2.69% with a charge collection efficiency (CCE) of 95.9% at -260 V. More importantly, this work demonstrates for the first time through Geant4 simulations that depletion-width nonuniformity is the dominant source of partial energy leakage, leading to an extended low-energy tail in the energy spectrum. We establish a depletion-width nonuniformity model and observe good agreement between simulation and experiment. This finding provides practical guidance for the design and optimization of high-performance GaN-based radiation detectors.

Keywords

Cite

@article{arxiv.2604.23923,
  title  = {Development and Performance Study of Vertical GaN $\alpha$-Particle Detector with High Energy Resolution},
  author = {Minjie Ye and Yuzi Yang and Jiangtao Wei and Weilong Qin and Hao Hong and Dong Han and Jianping Ni and Zhiyi Liu and Po-Chung Huang and Cheng-Chang Yu and Chao-Yi Fang and Entsai Lin and Zewen Liu and Shaomin Chen},
  journal= {arXiv preprint arXiv:2604.23923},
  year   = {2026}
}