Detector Response to D-D Neutrons and Stability Measurements with 4H Silicon Carbide Detectors

Author:

Kushoro Matteo HakeemORCID,Rebai Marica,Tardocchi Marco,Altana Carmen,Cazzaniga Carlo,De Marchi Eliana,La Via FrancescoORCID,Meda LauraORCID,Meli Alessandro,Parisi Miriam,Perelli Cippo Enrico,Pillon MarioORCID,Trotta Antonio,Tudisco SalvoORCID,Gorini Giuseppe

Abstract

The use of wide-band-gap solid-state neutron detectors is expanding in environments where a compact size and high radiation hardness are needed, such as spallation neutron sources and next-generation fusion machines. Silicon carbide is a very promising material for use as a neutron detector in these fields because of its high resistance to radiation, fast response time, stability and good energy resolution. In this paper, measurements were performed with neutrons from the ISIS spallation source with two different silicon carbide detectors together with stability measurements performed in a laboratory under alpha-particle irradiation for one week. Some consideration to the impact of the casing of the detector on the detector’s counting rate is given. In addition, the detector response to Deuterium-Deuterium (D-D) fusion neutrons is described by comparing neutron measurements at the Frascati Neutron Generator with a GEANT4 simulation. The good stability measurements and the assessment of the detector response function indicate that such a detector can be used as both a neutron counter and spectrometer for 2–4 MeV neutrons. Furthermore, the absence of polarization effects during neutron and alpha irradiation makes silicon carbide an interesting alternative to diamond detectors for fast neutron detection.

Publisher

MDPI AG

Subject

General Materials Science

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. 250 μm Thick Detectors for Neutron Detection: Design, Electrical Characteristics, and Detector Performances;Key Engineering Materials;2024-08-22

2. Operation of a 250μm-thick SiC detector with DT neutrons at high temperatures;Fusion Engineering and Design;2024-07

3. Partially depleted operation of 250 μm-thick silicon carbide neutron detectors;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2024-01

4. Emerging SiC Applications beyond Power Electronic Devices;Micromachines;2023-06-06

5. Performance of a thick 250 μm silicon carbide detector: stability and energy resolution;Journal of Instrumentation;2023-03-01

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