Highly stable femtosecond laser for synthesis and measurement of optical frequencies

S. Bagayev, S. Chepurov, V. M. Klementyev, S. Kuznetsov, V. Pivtsov, V. F. Zakharyash
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Abstract

Summary form only given, as follows. The creation of a highly stable femtosecond self-mode-locked Ti:sapphire laser using simultaneous stabilization of the frequency of intermode beats and optical frequency is reported. The frequency stability of intermode beats is 10/sup -14/ in 1000 s is obtained. The results of using this laser for the synthesis and measurement of optical frequencies or the difference of optical frequencies in IR, visible, and UV spectral ranges are presented. The principles of creation of a femtosecond optical clock with the use of the frequency of He-Ne/CH/sub 4/-standard as a reference are discussed.
用于光学频率合成和测量的高稳定飞秒激光器
仅给出摘要形式,如下。报道了一种高度稳定的飞秒自锁模钛蓝宝石激光器,该激光器同时稳定了模间拍和光频率。在1000秒内获得了10/sup -14/的模间拍频稳定性。介绍了用该激光器合成和测量红外、可见光和紫外光谱范围内的光频或光频差的结果。讨论了以He-Ne/CH/sub - 4/-标准频率为参考,制作飞秒光时钟的原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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