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Self-Aligned Extended-Cavity Diode Laser Stabilized by the Zeeman Effect on the Cesium D2 Line

机译:塞曼效应在铯D 2 线上稳定的自对准扩展腔二极管激光器

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摘要

An extended-cavity diode laser at 852 nm has been built especially for the purpose of cooling and probing cesium atoms. It is a compact, self-aligned, and continuously tunable laser source having a 100-kHz linewidth and 60-mW output power. The electronic control of the laser frequency by the piezodriven external reflector covers a 4.5-kHz bandwidth, allowing full compensation of acoustic frequency noise without any adverse effect on the laser intensity noise. We locked this laser to Doppler-free resonances on the cesium line by using the Zeeman modulation technique, resulting in the frequency and the intensity of the laser beam being unmodulated. We also tuned the locked laser frequency over a span of 120 MHz by using the dc Zeeman effect to shift the = 4– = 5 reference transition.
机译:专门为冷却和探测铯原子的目的,制造了波长为852 nm的长腔二极管激光器。它是一种紧凑,自对准且连续可调的激光源,具有100kHz的线宽和60mW的输出功率。压电驱动的外部反射器对激光频率进行电子控制,覆盖4.5 kHz带宽,从而可以完全补偿声频噪声,而不会对激光强度噪声产生任何不利影响。通过使用Zeeman调制技术,我们将该激光器锁定在铯线上的无多普勒共振状态,从而使激光束的频率和强度不受调制。我们还使用dc Zeeman效应在= 4– = 5的参考跃迁范围内调谐了120 MHz范围内的锁定激光频率。

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