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Precision measurement of wavelengths emitted by a molecular fluorine laser at 157 nm

机译:精确测量分子氟激光在157 nm处发射的波长

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摘要

The wavelengths of six spectral lines emitted by a molecular fluorine (F_(2)) laser at 157 nm were measured to high accuracy with the 10.7-m normal-incidence vacuum spectrograph at the National Institute of Standards and Technology. Lines from a Pt-Ne hollow-cathode lamp served as the wavelength standards. Spectra of the laser and the Pt-Ne lamp were photographed simultaneously through an uncoated CaF_(2) beam splitter. The optical paths were arranged so as to avoid shifts in line positions arising from possible differences in illumination of the grating by the two sources. The strongest lasing line was found to have a wavelength of 157.63094(10) nm. Changes in wavelength for variations in gas mixture, total gas pressure, and voltage were also measured.
机译:使用美国国家标准技术研究院的10.7 m正入射真空光谱仪,以高准确度测量了分子氟(F_(2))激光在157 nm处发射的六条光谱线的波长。来自Pt-Ne空心阴极灯的线用作波长标准。通过未镀膜的CaF_(2)分束器同时拍摄激光和Pt-Ne灯的光谱。布置光路是为了避免由于两个光源对光栅的照明可能存在差异而引起的线位置偏移。发现最强的激光线的波长为157.63094(10)nm。还测量了气体混合物,总气体压力和电压变化的波长变化。

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