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首页> 外文期刊>Radiation Physics and Chemistry >Measurement of the angular distribution of thick target bremsstrahlung produced by 10-25 keV electrons incident on Ti and Cu targets
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Measurement of the angular distribution of thick target bremsstrahlung produced by 10-25 keV electrons incident on Ti and Cu targets

机译:在Ti和Cu靶中产生10-25 keV电子产生的厚靶Bremsstrahlung角分布的测量

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Angular distributions of bremsstrahlung photons produced by 10-25 keV electrons incident on thick Ti (Z = 22) and Cu (Z = 29) targets using a Si-PIN photodiode detector have been measured and new results are reported. The incidence angle, defined as the angle between the direction of the incident electrons and the normal of the target surface, varied between 15 and 75. The intensity of the bremsstrahlung radiation, differential in angle and energy, that is, the double differential bremsstrahlung yield, was obtained by varying the incidence angle, while the photon detector was kept fixed perpendicular to the electron beam direction in reflection geometry. The experimental bremsstrahlung yields were normalized so that the values measured at 45 coincide with the results of Monte Carlo simulations. For the other incidence angles, the measured yields are found to be in good agreement with simulation results, within the experimental uncertainties. Our results suggest that the bremsstrahlung radiation emerging from the considered electron-target collision reactions is anisotropic in general; a relatively larger anisotropy is observed for all energy photons produced by high-energy electrons compared to that by low energy electrons. Furthermore, there is an indication of a weak dependence of the angular variation of the bremsstrahlung yield on atomic number (Z) of the bombarded targets.
机译:已经测量了使用Si-PIN光电二极管检测器的厚Ti(Z = 22)和Cu(Z = 29)靶的10-25keV电子产生的Bremsstrahlung光子的角度分布,并报道了新的结果。入射角,定义为入射电子方向与目标表面的法线之间的角度,在15到75之间变化。Bremsstrahlung辐射的强度,角度和能量的差异,即双差分Bremsstrahlung产量,通过改变入射角而获得,而光子检测器保持垂直于反射几何形状的电子束方向固定。实验性Bremsstrahlung产率归一化,使得45测量的值与蒙特卡罗模拟的结果一致。对于其他发射角度,发现测量的产率与模拟结果吻合良好,在实验的不确定性中。我们的研究结果表明,从考虑的电子目标碰撞反应中出现的Bremsstrahlung辐射通常是各向异性的;与通过低能量电子相比,通过高能量电子产生的所有能量光子观察到相对较大的各向异性。此外,存在对轰击靶标的原子数(Z)的Bremsstrahlung产量的角度变化的弱依赖性。

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