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Frequency-stabilized diode laser with the Zeeman shift in an atomic vapor

机译:在原子蒸气中发生塞曼位移的稳频二极管激光器

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摘要

We demonstrate a robust method of stabilizing a diode laser frequency to an atomic transition. This technique employs the Zeeman shift to generate an antisymmetric signal about a Doppler-broadened atomic resonance, and therefore offers a large recapture range as well as high stability. The frequency of a 780-nm diode laser, stabilized to such a signal in Rb, drifted less than 0.5 MHz peak-peak (1 part in 10~(9)) in 38 h. This tunable frequency lock can be constructed inexpensively, requires little laser power, rarely loses lock, and can be extended to other wavelengths by use of different atomic species.
机译:我们演示了一种稳定二极管激光器频率稳定到原子跃迁的方法。该技术利用塞曼位移产生关于多普勒扩展的原子共振的反对称信号,因此具有较大的捕获范围以及较高的稳定性。稳定在Rb中的780 nm二极管激光器的频率在38 h内漂移不到0.5 MHz峰-峰值(10〜(9)中的1分)。这种可调谐的频率锁定可以廉价地构造,需要很少的激光功率,很少丢失锁定,并且可以通过使用不同的原子种类扩展到其他波长。

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