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Narrow linewidth light source for an ultraviolet optical frequency standard

机译:紫外光频率标准的窄线宽光源

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We report an ultra-narrow linewidth light source applicable for a frequency standard in the ultraviolet. The laser is a Nd:YAG laser that emits at 946 nm with 300-mW output power. It is locked to a high-finesse cavity. The minimum Allan deviation is 1.3 x 10~(-14) for an integration time of 1 s, which corresponds to a laser linewidth of 2.8 Hz. The cavity drift is measured by a frequency comb and a single-ion spectrum for different time scales. In order to investigate broadening mechanisms due to the fiber transport and doubling systems, the laser light is frequency doubled with two independent systems and compared. The measured minimum beat-note between the two laser fields is less than 1 Hz. By carrying out a high-resolution scan on a trapped single indium ion, we observe a linewidth of 260 Hz on the ion clock transition. Possible reasons for the broadening effects are discussed.
机译:我们报告了适用于紫外线频率标准的超窄线宽光源。该激光器是Nd:YAG激光器,其发射功率为946 nm,输出功率为300 mW。它被锁定在高级腔中。对于1 s的积分时间,最小艾伦偏差为1.3 x 10〜(-14),对应于2.8 Hz的激光线宽。腔漂移是通过频率梳和单离子光谱针对不同时标测量的。为了研究由于光纤传输和倍增系统而引起的加宽机制,使用两个独立的系统将激光倍频并进行比较。在两个激光场之间测得的最小拍音小于1 Hz。通过对捕获的单个铟离子进行高分辨率扫描,我们观察到离子时钟跃迁上的线宽为260 Hz。讨论了扩大影响的可能原因。

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