R. V. Digurov, V. D. Blank, V. N. Denisov, S. Yu. Martyushov, B. P. Sorokin, S. A. Terent’ev, S. N. Polyakov
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引用次数: 0
摘要
摘要 圆柱弯曲金刚石单晶板在制造能量色散光谱仪和聚焦晶体单色仪方面具有巨大潜力。在设计时,有必要考虑到弯曲板时产生的巨大应力。本文计算了圆柱形弯曲单晶 (110) 金刚石板中的应变张量和弹性应力场。计算以局部 Laue 衍射获得的实验数据为基础。计算结果可用于设计能够控制其参数的新型 X 射线光学设备。
Determination of the Strain Tensor and the Elastic Stress Fields in a Diamond Plate with a High Bending Curvature Using Local Laue Diffraction Data
Cylindrically bent diamond single-crystal plates have a great potential for creating energy dispersive spectrometers and focusing crystal monochromators. When they are designed, it is necessary to take into account the significant stresses that appear on bending the plates. The strain tensor and the elastic stress fields in a cylindrically bent single-crystal (110) diamond plate are calculated. The calculations are based on experimental data obtained by local Laue diffraction. The calculation results can be used to design new X-ray optical devices with the ability to control their parameters.
期刊介绍:
Journal of Experimental and Theoretical Physics is one of the most influential physics research journals. Originally based on Russia, this international journal now welcomes manuscripts from all countries in the English or Russian language. It publishes original papers on fundamental theoretical and experimental research in all fields of physics: from solids and liquids to elementary particles and astrophysics.