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Absolute gravimeters: status report on the use of iodine-stabilized He-Ne lasers at λ≈633 nm

机译:绝对重力仪:关于使用波长稳定在≈≈633nm的碘稳定的He-Ne激光器的状态报告

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摘要

In the error budget for absolute measurements of g, one of the most important contributions is the uncertainty of the frequency of the stabilized laser used as the reference wavelength. This was confirmed during the third International Comparison of Absolute Gravimeters held at the BIPM in 1989, at which the frequencies of all the lasers used in the gravimeters were checked by beat frequency against a BIPM reference laser. This problem was solved by the replacement of a He-Ne laser at λ≈633 nm stabilized by the requirement that the intensity of two orthogonal modes be equal by a laser stabilized with respect to the saturated absorption of iodine at the same wavelength. A new design of portable laser, realized at the BIPM and developed by commercial companies, is described and the capabilities of this laser for use as a primary standard of wavelength or reference wavelength in a new generation of absolute gravimeters are presented. The results of the frequency calibration of the lasers used in the absolute gravimeters which participated in the fourth International Comparison of Absolute Gravimeters held at the BIPM in May and June 1994 are also presented.
机译:在用于g的绝对测量的误差预算中,最重要的贡献之一是用作参考波长的稳定激光器的频率不确定性。 1989年在BIPM举行的第三次“国际重力计国际比较”中,这一点得到了证实,当时在重力计中使用的所有激光器的频率均通过拍频相对于BIPM参考激光器进行了检查。通过替换稳定的λ≈633nm的He-Ne激光器解决了这个问题,该激光器需要两个正交模式的强度等于相对于相同波长下碘的饱和吸收稳定的激光器。描述了由BIPM实现并由商业公司开发的便携式激光的新设计,并介绍了该激光在新一代绝对重力仪中用作波长或参考波长的主要标准的功能。还介绍了参加1994年5月和6月在BIPM举行的第四次国际重力仪国际比较的绝对重力仪所用激光器的频率校准结果。

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