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Frequency characteristics of an inherently stable Nd:YAG laser operated at liquid helium temperature

机译:在液氦温度下工作的固有稳定Nd:YAG激光器的频率特性

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摘要

We report on frequency measurements of a free-running Nd:YAG laser operating at temperatures down to 6.5 K using a femtosecond laser frequency comb. Due to lower thermal expansion and thermo-optic effects as well as reduced electron-phonon interactions in Nd:YAG at cryogenic temperatures, a laser frequency stability on the order of 10~(-11) at tau <= 30 s has been achieved. Within a one-week measurement period, absolute frequency deviations were lower than 1.85 MHz. This is up to a 100-fold improvement of frequency stability compared to any existing free-running solid-state laser.
机译:我们报告了使用飞秒激光频率梳对在低至6.5 K的温度下运行的Nd:YAG自由运行激光器的频率测量结果。由于在低温下Nd:YAG中较低的热膨胀和热光效应以及降低的电子-声子相互作用,因此在tau <= 30 s时获得了10〜(-11)的激光频率稳定性。在一周的测量期内,绝对频率偏差低于1.85 MHz。与现有的任何自由运行型固态激光器相比,它的频率稳定性提高了100倍。

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