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用于放射生物学研究的25兆电子伏氘核在厚铍靶上产生的中子场;能谱

Neutron field produced by 25 MeV deuteron on thick beryllium for radiobiological study; energy spectrum.

作者信息

Takada Masashi, Mihara Erika, Sasaki Michiya, Nakamura Takashi, Honma Toshihiko, Kono Koji, Fujitaka Kazunobu

机构信息

National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan.

出版信息

Radiat Prot Dosimetry. 2004;110(1-4):601-6. doi: 10.1093/rpd/nch142.

Abstract

Biological data is necessary for estimation of protection from neutrons, but there is a lack of data on biological effects of neutrons for radiation protection. Radiological study on fast neutrons has been done at the National Institute of Radiological Sciences. An intense neutron source has been produced by 25 MeV deuterons on a thick beryllium target. The neutron energy spectrum, which is essential for neutron energy deposition calculation, was measured from thermal to maximum energy range by using an organic liquid scintillator and multi-sphere moderated 3He proportional counters. The spectrum of the gamma rays accompanying the neutron beam was measured simultaneously with the neutron spectrum using the organic liquid scintillator. The transmission by the shield of the spurious neutrons originating from the target was measured to be less than 1% by using the organic liquid scintillator placed behind the collimator. The measured neutron energy spectrum is useful in dose calculations for radiobiology studies.

摘要

生物学数据对于评估中子防护是必要的,但缺乏用于辐射防护的中子生物学效应数据。日本国立放射科学研究所已开展了快中子的放射学研究。利用25兆电子伏特的氘核轰击厚铍靶产生了强中子源。通过使用有机液体闪烁体和多球慢化3氦正比计数器,在从热中子能到最大能量范围内测量了对于中子能量沉积计算至关重要的中子能谱。使用有机液体闪烁体与中子能谱同时测量了伴随中子束的伽马射线能谱。通过使用置于准直器后方的有机液体闪烁体,测得源自靶的杂散中子的屏蔽传输小于1%。所测得的中子能谱对于放射生物学研究的剂量计算很有用。

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