English

Tracking particles at fluences 5-10 $\cdot$1E16 $n_{eq}$/cm$^2$

Instrumentation and Detectors 2019-09-02 v1 High Energy Physics - Experiment

Abstract

This paper presents the possibility of using very thin Low Gain Avalanche Diodes (LGAD) (2550μ25 - 50\mum thick) as tracking detector at future hadron colliders, where particle fluence will be above 1016  neq/cm210^{16}\; n_{eq}/cm^2. In the present design, silicon sensors at the High-Luminosity LHC will be 100- 200 μ\mum thick, generating, before irradiation, signals of 1-2 fC. This contribution shows how very thin LGAD can provide signals of the same magnitude via the interplay of gain in the gain layer and gain in the bulk up to fluences above 1016  neq/cm210^{16}\; n_{eq}/cm^2: up to fluences of 0.1-0.31016  neq/cm2\cdot 10^{16}\; n_{eq}/cm^2, thin LGADs maintain a gain of \sim 5-10 while at higher fluences the increased bias voltage will trigger the onset of multiplication in the bulk, providing the same gain as previously obtained in the gain layer. Key to this idea is the possibility of a reliable, high-density LGAD design able to hold large bias voltages (\sim 500V).

Keywords

Cite

@article{arxiv.1908.11605,
  title  = {Tracking particles at fluences 5-10 $\cdot$1E16 $n_{eq}$/cm$^2$},
  author = {N. Cartiglia and H. Sadrozinski and A. Seiden},
  journal= {arXiv preprint arXiv:1908.11605},
  year   = {2019}
}
R2 v1 2026-06-23T11:00:46.735Z