The detection of high energy particles is widely considered as a crucial task for fusion reactors physics. A particular role, in this context, is owned by neutrons and photons which, being not charged, can leave the fusion machine and provide useful information about the plasma. In this contribution, the energy calibration and the first experimental measurements of a new diagnostic for the neutron-gamma detection are presented. The experimental system is composed of 6 scintillator cells coupled with flat photomultiplier tubes (PMTs) through silicon rubber interfaces. The output anode signals are fed into a CAEN DT5725 14 bit 250 MS/s Digitizer, equipped with algorithms for real-time analysis of each individual scintillation event. The PMTs are operated at relatively low voltage (~1kV), in order to avoid saturation effects, by means of a CAEN DT5533E HV power supply module. One detector cell is based on NaI(Tl) crystal scintillator, the remaining ones use EJ-309 organic liquid scintillators. While the former, sensible only to high energy photons, is used for gamma-ray spectra analysis, the latter are used for fast neutron detection, thanks to their capability to separate neutrons from the gamma-ray component of the radiation field, by means of the Pulse Shape Discrimination (PSD) technique [1]. ...

Neutron-gamma measurements at the Madison Symmetric Torus

Zuin M;
2018

Abstract

The detection of high energy particles is widely considered as a crucial task for fusion reactors physics. A particular role, in this context, is owned by neutrons and photons which, being not charged, can leave the fusion machine and provide useful information about the plasma. In this contribution, the energy calibration and the first experimental measurements of a new diagnostic for the neutron-gamma detection are presented. The experimental system is composed of 6 scintillator cells coupled with flat photomultiplier tubes (PMTs) through silicon rubber interfaces. The output anode signals are fed into a CAEN DT5725 14 bit 250 MS/s Digitizer, equipped with algorithms for real-time analysis of each individual scintillation event. The PMTs are operated at relatively low voltage (~1kV), in order to avoid saturation effects, by means of a CAEN DT5533E HV power supply module. One detector cell is based on NaI(Tl) crystal scintillator, the remaining ones use EJ-309 organic liquid scintillators. While the former, sensible only to high energy photons, is used for gamma-ray spectra analysis, the latter are used for fast neutron detection, thanks to their capability to separate neutrons from the gamma-ray component of the radiation field, by means of the Pulse Shape Discrimination (PSD) technique [1]. ...
2018
Istituto gas ionizzati - IGI - Sede Padova
Inglese
2nd Asia-Pacific Conference on Plasma Physics (AAPPS-DPP 2018)
http://aappsdpp.org/DPP2018Program/pdf/MFP-24.pdf
November 12-17, 2018
Kanazawa, Japan
Madison Symmetric Torus
MST
Neutron-gamma measurements
MFP-24
7
info:eu-repo/semantics/conferenceObject
none
274
04 Contributo in convegno::04.02 Abstract in Atti di convegno
Cordaro, L; Zuin, M; Anderson, Jk; Stevanato, L; Fontana, C; Bonesso, I; Kim, J
   Implementation of activities described in the Roadmap to Fusion during Horizon 2020 through a Joint programme of the members of the EUROfusion consortium
   EUROfusion
   H2020
   633053
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/358310
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