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Coherent to Incoherent Cross Section Ratio for 59.54 keV Gamma Rays at Scattering Angle of 110°

机译:在散射角度为110°的散射角度相干至不连贯的横截面比。

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The coherent (Rayleigh) to incoherent (Compton) scattering cross-section ratio of elements, in the range 13 ≤ Z ≤ 82, are determined experimentally for 59.54 keV incident gamma photons. An HPGe (High purity germanium) semiconductor detector is employed, at scattering angle of 110°, to record the spectra originating from interactions of incident gamma photons with the target under investigation. The intensity ratio of Rayleigh to Compton scattered peaks observed in the recorded spectra, and corrected for photo-peak efficiency of gamma detector and absorption of photons in the target and air, along with the other required parameters provides the differential cross-section ratio. The measured values of cross-section ratio are found to agree with theoretical predictions based upon non-relativistic form factor, relativistic form factor, modified form factor and S-matrix theory.
机译:相干(瑞利)到非连锁(COPON)散射横截面比的元素的横截面比,在13≤Z≤82的范围内进行实验确定59.54keV入射伽马光子。采用HPGE(高纯度锗)半导体检测器110°的散射角度,以记录源自入射伽马光子相互作用的光谱与靶在调查中。在记录的光谱中观察到的Rayleigh到Compton散射峰的强度比,并校正了伽马检测器的光峰值效率和靶和空气中的光子的吸收,以及其他所需参数提供差分横截面比。发现横截面比的测量值与基于非相对论形式因子,相对论形式因子,修饰的外形和S矩阵理论的理论预测。

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