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Simulation of e-γ-n targets by FLUKA and measurement of neutron flux at various angles for accelerator based neutron source

机译:基于FLUKA的e-γ-n目标仿真以及基于加速器的中子源在不同角度下的中子通量测量

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A 6 MeV Race track Microtron (an electron accelerator) based pulsed neutron source has been designed specifically for the elemental analysis of short lived activation products where the low neutron flux requirement is desirable. The bremsstrahlung radiation emitted by impinging 6 MeV electron on the e-y primary target, was made to fall on the y-n secondary target to produce neutrons. The optimisation of bremsstrahlung and neutron producing target along with their spectra were estimated using FLUKA code. The measurement of neutron flux was carried out by activation of vanadium and the measured fluxes were 1.1878 x 105, 0.9403 x 105, 0.7428 x 105, 0.6274 x 105, 0.5659 x 105, 0.5210 x 105 n/cm2/s at 0°, 30°, 60°, 90°, 115°, 140° respectively. The results indicate that the neutron flux was found to be decreased as increase in the angle and in good agreement with the FLUKA simulation.
机译:基于6 MeV赛道Microtron(电子加速器)的脉冲中子源专门设计用于需要低中子通量的短寿命活化产物的元素分析。通过将6 MeV电子撞击到y-y初级靶上而产生的致辐射被降到y-n次级靶上以产生中子。使用FLUKA代码估算了ms致辐射和中子产生靶的优化及其光谱。通过激活钒进行中子通量的测量,在0°,30时测得的通量为1.1878 x 105、0.9403 x 105、0.7428 x 105、0.6274 x 105、0.5659 x 105、0.5210 x 105 n / cm2 / s °,60°,90°,115°,140°。结果表明,发现中子通量随着角度的增加而减小,并且与FLUKA模拟吻合良好。

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