English

Photodetectors and front-end electronics for the LHCb RICH upgrade

Instrumentation and Detectors 2018-03-14 v1 High Energy Physics - Experiment

Abstract

The RICH detectors of the LHCb experiment provide identification of hadrons produced in high energy proton-proton collisions in the LHC at CERN over a wide momentum range (2 to 100 GeV/c). Cherenkov light is collected on photon detector planes sensitive to single photons. The RICH will be upgraded (in 2019) to read out every bunch crossing, at a rate of 40 MHz. The current hybrid photon detectors (HPD) will be replaced with multi-anode photomultiplier tubes (customisations of the Hamamatsu R11265 and the H12699 MaPMTs). These 8×\times8 pixel devices meet the experimental requirements thanks to their small pixel size, high gain, negligible dark count rate (\sim50 Hz/cm2^2) and moderate cross-talk. The measured performance of several tubes is reported, together with their long-term stability. A new 8-channel front-end chip, named CLARO, has been designed in 0.35 μ\mum CMOS AMS technology for the MaPMT readout. The CLARO chip operates in binary mode and combines low power consumption (\hbox{\sim1 mW/Ch}), wide bandwidth (baseline restored in \leq25 ns) and radiation hardness. A 12-bit digital register permits the optimisation of the dynamic range and the threshold level for each channel and provides tools for the on-site calibration. The design choices and the characterization of the electronics are presented.

Keywords

Cite

@article{arxiv.1611.00406,
  title  = {Photodetectors and front-end electronics for the LHCb RICH upgrade},
  author = {L. Cassina},
  journal= {arXiv preprint arXiv:1611.00406},
  year   = {2018}
}