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Development of a new TOT-ASIC circuit for SiPM with a good time resolution

ORAL

Abstract

Detectors with SiPMs and plastic scintillators have been widely used as timing counters. Discrete circuits with a fast amplifier are well applied and are achieved <100 ps time-resolution [1]. Since these circuits require large currents, development of miniaturized circuitry is essentially important for power-saving.

We are developing a new ASIC-based circuit to read out signals from Time-Of-Flight detectors combining a plastic scintillator and SiPM (Hamamatsu S13360-3050PE). This ASIC development is based on established TOF-PET ASIC, which obtains timing and charge information with Time Over Threshold (TOT) method [2]. We tested the circuit's performance with electrons from the accelerator at ELPH Tohoku. This new ASIC circuit is expected to be widely applicable not only to particle and nuclear experiments but also to space and medical applications.

I will present the results of the performance test of the TOF-PET ASIC with a plastic-scintillator paddle and the progress of the new ASIC development.

[1] 10.1109/TNS.2014.2321657, http://dx.doi.org/10.1109/TNS.2014. 2347576, arXiv:1402.1404.

[2] T. Orita et al., Nucl. Inst. and Meth. A 912 (2018) 303.

Presenters

  • Ken Nishida

    The University of Tokyo

Authors

  • Ken Nishida

    The University of Tokyo

  • Takeru Akiyama

    Tohoku University

  • Tatsuhiro Ishige

    Tohoku University

  • Mizuki Uenomachi

    Kyoto University

  • Tadashi Orita

    The University of Tokyo

  • Masashi Kaneta

    Tohoku University, Tohoku Univ

  • Ryoko Kino

    Tohoku University

  • Rintaro Kurata

    Tohoku University

  • Kenji Shimazoe

    The University of Tokyo

  • Tadayuki Takahashi

    The University of Tokyo, Kavli IPMU

  • Sho Nagao

    The University of Tokyo

  • Satoshi N Nakamura

    The University of Tokyo

  • Kotaro Nishi

    The University of Tokyo

  • Masaya Mizuno

    Tohoku University

  • Daigo Watanabe

    Tohoku University, Tohoku Univ