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A Robust Phase-locked Diode Laser System For Eit Experiments In Cesium

机译:用于铯中Eit实验的鲁棒锁相二极管激光系统

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We describe a phase-locked diode laser system specifically designed for experiments that require two stable frequency-offset locked wavelengths, here used to prepare coherence in atomic media. The system consists of two external-cavity diode lasers that are phase-locked using an ultra-low phase-noise digital-only phase detector and appropriate loop filters. The residual phase-noise variance σ_φ~2 was measured to be less than 0.02 rad~2. The system was used to demonstrate electromagnetically induced transparency (EIT) in Cs reaching a transmission of >60% for a transparency window width of 1.1 MHz. We present a theoretical description of the measured transmission curves relying on the dephasing rate as the only free parameter.
机译:我们描述了一种专为需要两个稳定的频偏锁定波长的实验而设计的锁相二极管激光系统,此处用于准备原子介质中的相干性。该系统由两个外腔二极管激光器组成,这些激光器使用超低相位噪声数字纯相位检测器和适当的环路滤波器进行锁相。测得残余相位噪声方差σ_φ〜2小于0.02 rad〜2。该系统用于演示Cs中的电磁感应透明性(EIT),对于1.1 MHz的透明窗口宽度,其透射率> 60%。我们介绍了依赖于移相速率作为唯一自由参数的测量传输曲线的理论描述。

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