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Laser heterodyne method for high-resolution gas-density measurements

机译:激光外差法用于高分辨率气体密度测量

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摘要

A new method for noncontact, high-resolution measurement of gas density is described. The method uses a two-frequency Zeeman-split He-Ne laser and cumulative phase-measuring electronics. The measurement is resolved in two dimensions and provides density that is averaged only along the length of the laser beam that passes through the test section. The technique is based on highly accurate measurement of the optical path-length change of the laser beam as it passes through a test cell (in principle, to within 0.001λ, where λ is the wavelength of the laser). The technique also provides a very large dynamic range (again, in principle, up to 10~(10)), which makes the method additionally attractive. Although the optical path length through the test section is directly related to the index of refraction, and hence to the density of the gas, the method can also be used to measure temperature (if the gas pressure is known) or pressure (if the temperature is known).
机译:描述了一种非接触式高分辨率气体密度测量的新方法。该方法使用两频Zeeman分裂He-Ne激光器和累积相位测量电子设备。测量在二维上分解,并提供仅沿通过测试部分的激光束长度取平均值的密度。该技术基于激光束通过测试单元时的光程长度变化的高精度测量(原则上在0.001λ以内,其中λ是激光的波长)。该技术还提供了非常大的动态范围(原则上再次达到10〜(10)),这使该方法更具吸引力。尽管通过测试部分的光路长度与折射率直接相关,因此与气体密度直接相关,但是该方法也可以用于测量温度(如果已知气体压力)或压力(如果温度为零)。是已知的)。

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