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Thermal noise further reduced ultrastable laser with frequency instability of 5൷10−16

机译:热噪声进一步降低了频率不稳定度为5൷10 −16 的超稳定激光器

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We report on the progress of the thermal noise further reduced method via enlarging the equivalent beam size without increasing the cavity length in cavity-stabilized lasers at 1555 nm, which are built as the frequency source for a photonic microwave generation system. In addition, we perform an experiment to evaluate the effect of thermal noise reduced method via estimating the frequency instability of a synthesized new ultrastable laser. The relative frequency instability reaches 5×10-16at 1 s averaging time via reducing the thermal noise of the cavity.
机译:我们通过扩大等效光束尺寸而不增加空腔稳定激光器在1555 nm处的空腔长度来报告热噪声进一步减少方法的进展,该激光器被用作光子微波产生系统的频率源。此外,我们通过估算合成的新型超稳定激光器的频率不稳定性来进行实验,以评估热噪声降低方法的效果。相对频率不稳定性达到5×10 -16 通过降低腔体的热噪声,在平均时间为1 s的情况下。

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