English

Studies on photon-feedback and LaB$_6$ photocathode for the GasPM development

Instrumentation and Detectors 2026-05-25 v1 High Energy Physics - Experiment

Abstract

We present new developments, based on beam tests and cosmic rays, on the gaseous photomultiplier (GasPM). The GasPM detects photons by combining a photocathode with a resistive-plate-chamber avalanche. It achieves O\mathcal{O}(10) ps time resolution with affordable scalability. The GasPM provides precise and efficient Cherenkov-based charged-particle identification too when combined with a radiator. Our target application in a future Belle II upgrade aims at suppressing beam-induced background photons, which are typically detected off-collision time, that spoil the electromagnetic calorimeter performance. We reached 25 ps single-photon time-resolution at 3.3x106^6 gain in 2022, using a picosecond-pulse laser and a LaB6_6 photocathode. However, electrons entering through a MgF2_2 window upstream of a CsI photocathode showed a worsening to 70 ps in a 2023 test. Here we aim at addressing the chief causes of the observed degradation. We focus on ultraviolet-photon emission from the de-excitation of the gas molecules, which generates a secondary "photon-feedback" signal overlapping the primary one, and degrading time resolution. We conceive and operate an improved beam test that, along with multiple device-configuration changes, employes a new 10 GSPS frequency digitizer to separate the photon-feedback signal from the genuine signal. We also use cosmic-rays on a LaB6_6 photocathode, which has higher than CsI's resistance to air and to ions drifting backwards onto the photocathode, to explore its quantum efficiency.

Keywords

Cite

@article{arxiv.2605.23542,
  title  = {Studies on photon-feedback and LaB$_6$ photocathode for the GasPM development},
  author = {Simone Garnero and Kenji Inami and Kodai Matsuoka and Ryogo Okubo and Koichi Ueda},
  journal= {arXiv preprint arXiv:2605.23542},
  year   = {2026}
}

Comments

IFAE2026 conference proceeding