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論文

Compton scattering of quasi-monochromatic $$gamma$$-ray beam

Omer, M.; 静間 俊行*; 羽島 良一*

Nuclear Instruments and Methods in Physics Research A, 951, p.162998_1 - 162998_6, 2020/01

 被引用回数:1 パーセンタイル:13.27(Instruments & Instrumentation)

Compton scattering of a single-energy $$gamma$$-ray results in a one-to-one relationship between the incident and scattered photon energies. This relationship is altered when the incident beam has a definite energy distribution because of the broadening occurring in the energy distribution upon Compton scattering. This broadening causes a change in the spectral density of the Compton-scattered spectra. To restore the spectral density, the energy distribution of the scattered radiation must be manifested as a function of the scattering kinematics. Here, we propose a simple analytic way to calculate the energy spread of the scattered photons in terms of the geometry of the scattering process and the energy spread of the incident photon beam. The predictions of the model agree with measurements of Compton scattering of quasi-monochromatic $$gamma$$-ray beams, carried out at the High Intensity $$gamma$$-ray Source (HI$$gamma$$S) facility, Duke University. As a benchmark of our method, we measured the intensity profile of energy-distributed $$gamma$$-ray beams by direct measurements as well as by Compton scattering. We found that only when the spectral density of the scattered radiation is restored, the measured intensity profile agrees with the actual profile of the incident beam. The proposed method can continuously measure the flux of an energy-distributed $$gamma$$-ray beams in the real time and on a bin-by-bin basis. Such online monitoring of $$gamma$$-ray beams is indispensable for in-beam measurements and applications. This work was supported by the subsidiary for promotion of strengthening nuclear security or the like of the Ministry of Education, Culture, Sports, Science, and Technology (MEXT), Japan.

報告書

JT-60トムソン散乱計測における蒸着膜形成による観測窓の透過率低下と電子温度・密度測定値へ及ぼす影響

三浦 良和*; 吉田 英俊; 佐久間 猛*; 山下 修; 長島 章; 的場 徹

JAERI-M 90-167, 44 Pages, 1990/09

JAERI-M-90-167.pdf:1.15MB

JT-60トムソン散乱計測において、レーザー散乱光を観測する窓がプラズマからのスパッター等で汚れることにより、電子温度及び電子密度の測定値に影響を及ぼすことを明らかにした。本報告書は、1987~1989年の4期に渡るJT-60実験期間において、蒸着膜が付着した観測窓の分光透過率測定と蒸着膜の成分分析及び原因調査を行い、電子温度及び電子密度に与える影響を定量的に評価し、実験運転との対応について検討した結果をまとめたものである。

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