25 February 2019 to 1 March 2019
Budker INP
Asia/Novosibirsk timezone

Study of the fast calorimeter prototype for the Super Charm-Tau Factory

Not scheduled
15m
Budker INP

Budker INP

Lavrentiev av. 11, Novosibirsk, Russia
Poster

Speaker

Ms Ekaterina Prokhorova (Sergeevna)

Description

---------- Modern $e^{+} e^{-}$ factories with high luminosity require fast response time of the detector subsystems to suppress severe beam background. The prototype of the electromagnetic calorimeter based on the counter with pure CsI crystal, novel wavelength shifter with nanostructured organosilicon luminophores and avalanche photodiodes Hamamatsu S8664-55 is discussed. The results of measurements of the basic characteristics of such counters will be reported.

Summary

Modern $e^{+} e^{-}$ factories with high luminosity require fast response time of the detector subsystems to suppress severe beam background. Crystals of pure CsI (CsI(pure)), with a scintillation decay time of 30 ns, allow one to reduce substantially pileup noise in the electromagnetic calorimeter. We discuss the prototype of the electromagnetic calorimeter consisting of 16 counters. Each counter consists of CsI(pure) crystal (6 $\times$ 6 $\times$ 30 cm$^3$), wavelength shifter (WLS)
plate (6 $\times$ 6 $\times$ 0.8 cm$^3$) with the nanostructured organosilicon luminophores (NOL-9), four avalanche photodiodes (APD)
Hamamatsu S8664-55 and four-channel charge sensitive preamplifier, see Fig.1. The optimization of the shape of the
WLS plate has been carried out to improve the signal, see Fig.2. The signals from the counters are processed by four four-channel shaper-ADC boards with the signal waveform sampling.
By the end of February, we plan to measure the basic characteristics of counters.

Scheme of the counter: APDs are coupled to the truncated corner edges of the WLS plate (left), APDs are coupled to the two opposite edges of the WLS plate (right).
WLS plates with APDs.

Primary author

Ms Ekaterina Prokhorova (Sergeevna)

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Paper