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Precision angle measurement in a diffractional spectrometer by means of a ring laser

机译:借助环形激光器在衍射光谱仪中进行精确角度测量

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The measurement of radiation diffraction angles in spectrometers is usually carried out by means of optical encoders or laser interferometers. An angle measurement system based on a ring laser (RL) is described in this paper. The main feature of the RL is that a standing electromagnetic wave in the RL cavity can be considered as a high-precision circular scale. Systems incorporating RLs usually provide an accuracy of angle measurements of several hundredths of an arcsecond in the measurement range 0-360°. The system described here consists of a RL and an optical interference null-indicator located on a rotary platform optically connected to the crystal of the diffractional spectrometer. An analysis of the measurement principle and measurement errors is presented. It is shown that the main sources of error are the random drift of the phase of the RL output signal and the wideband fluctuation of the null-indicator output signal. Results of measurements of the x-ray line of K↓(α1)Mo radiation with an energy of radiation E = 17.47334 keV and corresponding wavelength λ = 0.71 # are shown. The angle measurement error of the described system turned out to be about 0.05 arcsecond.
机译:通常在光谱仪中通过光学编码器或激光干涉仪进行辐射衍射角的测量。本文介绍了一种基于环形激光器(RL)的角度测量系统。 RL的主要特征是RL腔中的驻波电磁波可以看作是高精度的圆形标尺。包含RL的系统通常在0-360°的测量范围内提供百分之几秒弧度的角度测量精度。此处描述的系统由RL和位于旋转平台上的光学干涉零位指示器组成,该光学平台与衍射光谱仪的晶体光学连接。对测量原理和测量误差进行了分析。结果表明,误差的主要来源是RL输出信号的相位的随机漂移和零指示器输出信号的宽带波动。示出了具有辐射能量E = 17.47334keV并且对应的波长λ= 0.71#的K↓(α1)Mo辐射的X射线线的测量结果。所描述的系统的角度测量误差结果为约0.05弧秒。

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