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首页> 外文期刊>Journal of synchrotron radiation >Investigation of 'glitches' in the energy spectrum induced by single-crystal diamond compound X-ray refractive lenses
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Investigation of 'glitches' in the energy spectrum induced by single-crystal diamond compound X-ray refractive lenses

机译:单晶金刚石化合物X射线折射镜诱导的能谱中“毛刺”的研究

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摘要

Single-crystal diamond stands out among all the candidate materials that could be exploited to fabricate compound refractive lenses (CRLs) owing to its extremely stable properties. Among all related experimental features, beam divergence, ω-angles relative to the incoming beam in Eulerian geometry and different positions of the X-ray beam relative to the lens geometry may influence the transmission energy spectrum of CRLs. In addition, the orientation of the single-crystal diamond sample may also affect the glitches significantly. To verify these initial assumptions, two experiments, an energy scan and an ω-scan, were set up by employing a polished diamond plate consisting of five biconcave lenses. The results show that beam divergence does not affect the spectrum, nor do ω-angles when ! is set to zero. Nevertheless, different incident positions have an appreciable effect on the transmission spectrum, in particular the 'strengths' of the glitches. This is attributed to absorption. The ω-scan setup is capable of determining the so-called orientation matrix, which may be used to predict both 'energy positions' and 'strengths' of the glitches.
机译:单晶钻石在所有候选材料中脱颖而出,可以利用由于其极其稳定的性质而剥削化合物折射镜片(CRL)。在所有相关的实验特征中,射线发散,相对于欧拉几何形状中的进入光束的ω-角和X射线束相对于镜头几何形状的不同位置可能影响CRL的传输能谱。另外,单晶金刚石样品的取向也可能显着影响毛刺。为了验证这些初始假设,通过采用由五个Biconcave镜片组成的抛光菱形板来建立两个实验,能量扫描和ω-扫描。结果表明,光束发散不会影响光谱,也不会使ω-角度发生在!设置为零。然而,不同的入射位置对透射光谱具有明显的影响,特别是故障的“强度”。这归因于吸收。 ω-扫描设置能够确定所谓的方向矩阵,其可用于预测故障的“能量位置”和“强度”。

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