Measurement of Neutron Parameters in the Treatment Beamof In-Hospital Neutron Irradiator

In order to verify the design specifications of in-hospital neutron irradiator (IHNI), the neutron fluence rates at the exit of its thermal and epithermal neutron beams were measured by using the method of cadmium difference. The radial distribution of the different components of the treatment beam...

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Bibliographic Details
Main Author: SHI Bin1, ZHANG Shufeng1, CHEN Jun1, LIU Xianke2, XIAO Hongfei3, ZHANG Zizhu4, QU Botian1, WANG Qian1, CAO Ping2, ZHANG Qingxian3, SONG Mingzhe1, LIU Yuntao1
Format: Article
Language:zho
Published: Editorial Board of Journal of Isotopes 2024-02-01
Series:Journal of Isotopes
Subjects:
Online Access:https://tws.xml-journal.net/cn/article/doi/10.7538/tws.2024.37.01.0001
Description
Summary:In order to verify the design specifications of in-hospital neutron irradiator (IHNI), the neutron fluence rates at the exit of its thermal and epithermal neutron beams were measured by using the method of cadmium difference. The radial distribution of the different components of the treatment beam exit was measured using a scanning device with a diamond detection unit. The results show that the thermal neutron fluence rates are 1.75×109 cm-2·s-1 and 6.57×107 cm-2·s-1 at the center of the thermal and epithermal neutron beams, respectively, and the epithermal neutron fluence rates are 1.41×107 cm-2·s-1 and 3.14×108 cm-2·s-1 at 30 kW full power operation; The vast majority of the treatment beam components are distributed within the beam aperture, with an exponential drop-off near the beam edges. The measurement results provide parameter support for subsequent related testing and experiments of In-Hospital Neutron Irradiators.
ISSN:1000-7512