首页> 外文会议>Conference on Laser Frequency Stabilization, Standards, Measurement, and Applications Jan 24-26, 2001, San Jose, USA >Iodine- stabilized, frequency- doubled Nd:YAG lasers at lambda = 532nm; design and performance.
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Iodine- stabilized, frequency- doubled Nd:YAG lasers at lambda = 532nm; design and performance.

机译:碘稳定的,倍频的Nd:YAG激光器,波长= 532nm;设计和性能。

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Three independent iodine stabilized laser systems have been set-up at the Physikalisch-Technische Bundesanstalt (PTB) for applications in frequency- and dimensional metrology. The lasers use saturated absorption of the P(54) 32 - 0 iodine transition in an external iodine cell as a frequency reference. The signals for stabilizing the lasers are obtained by using wavelength modulation spectroscopy and frequency modulation spectroscopy, respectively. With the different setups we have achieved instabilities of < 2 centre dot 10~(-13) for an integration time of 1 s and an agreement of the stabilized laser frequencies of the individual systems to better than 3 kHz. Together with absolute frequency measurements performed recently these lasers can compete with optical frequency standards based on atoms or ions. The drawbacks and advantages of the individual set- ups are discussed with respect to frequency stability, reproducibility and uncertainty. Besides the reproducibility, impurities of the iodine cells limit the uncertainty of the stabilized frequency. We have used one of our systems to investigate a random sample of iodine cells and compared these results with the ones obtained with an iodine- stabilized HeNe laser.
机译:Physikalisch-Technische Bundesanstalt(PTB)已建立了三个独立的碘稳定激光系统,用于频率和尺寸计量学。激光器使用外部碘池中P(54)32-0碘跃迁的饱和吸收作为频率参考。用于稳定激光器的信号分别通过使用波长调制光谱和频率调制光谱来获得。通过不同的设置,我们在1 s的积分时间内实现了<2个中心点10〜(-13)的不稳定性,并且各个系统的稳定激光频率均优于3 kHz。结合最近进行的绝对频率测量,这些激光器可以与基于原子或离子的光学频率标准竞争。讨论了各个设置的缺点和优势,包括频率稳定性,可再现性和不确定性。除了可重复性,碘电池的杂质还限制了稳定频率的不确定性。我们已经使用我们的系统之一来研究碘细胞的随机样本,并将这些结果与用碘稳定的HeNe激光器获得的结果进行了比较。

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