一个潜在的778 nm新频率/波长标准:铷的多普勒自由双光子跃迁

Y. Millerioux, R. Felder, D. Touahri, O. Acef, L. Hilico, A. Clairon, F. Biraben, B. de Beauvoir, L. Julien, F. Nez
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引用次数: 3

摘要

我们在天然铷(v=385 THz)中5D/sub 3/2/和5D/sub 5/2/双光子跃迁的超精细成分上稳定了两个激光二极管。我们仔细研究了这些装置的计量特性。到目前为止,我们得到的频率稳定性的艾伦方差为3.10/sup -13/。/spl tau//sup - 1/2 /高达2000秒,频率可重复性为10/sup -12/数量级。在相同的工作条件下,两种器件之间的频率差为1.7 kHz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A potential new frequency/wavelength standard at 778 nm: Doppler free two-photon transitions in rubidium
We have stabilized two laser diodes on the hyperfine components of the 5D/sub 3/2/ and 5D/sub 5/2/ two-photon transitions in natural rubidium (v=385 THz). We have carefully investigated the metrological features of these devices. So far we obtain a frequency stability in terms of the Allan variance of 3.10/sup -13/./spl tau//sup - 1/2 / up to 2000 s and a frequency repeatability of the order of 10/sup -12/. The frequency difference between the two devices is 1.7 kHz under identical operating conditions.<>
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