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Noise reduction and hyperfine level coherence in spontaneous noise spectroscopy of atomic vapor

机译:原子蒸气自发光谱中的降噪和超精细相干性

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摘要

We developed a system for measurements of power spectra of transmitted light intensity fluctuations, in which the extraneous noise, including shot noise, is reduced. In essence, we just apply light, measure the power of the transmitted light, and derive its power spectrum. We use this to observe the spontaneous noise spectra of photon atom interactions. Applying light with frequency modulation, we can also observe the spontaneous noise reflecting the coherence between the hyperfine levels in the excited state. There are two main novel components in the measurement system, the noise reduction scheme and the stabilization of the laser system. The noise reduction mechanism can be used to reduce the shot noise contribution to arbitrarily low levels through averaging, in principle. This is combined with differential detection to keep unwanted noise at low levels. The laser system is stabilized to obtain spectral width below 1 kHz without high frequency (?10 MHz) noise. These methods are described systematically and the performance of the measurement system is examined through experimental results.
机译:我们开发了一种用于测量透射光强度波动的功率谱的系统,该系统可减少包括散粒噪声在内的外部噪声。本质上,我们只是施加光,测量透射光的功率,然后得出其功率谱。我们用它来观察光子原子相互作用的自发噪声谱。使用调频光,我们还可以观察到自发噪声,该噪声反映了激发态下超精细能级之间的相干性。测量系统中有两个主要的新颖组件,即降噪方案和激光系统的稳定性。原则上,降噪机制可用于通过平均将散粒噪声贡献降低到任意低水平。结合差分检测将不必要的噪声保持在较低水平。稳定激光系统以获得低于1 kHz的光谱宽度,而没有高频(?10 MHz)噪声。对这些方法进行了系统地描述,并通过实验结果检查了测量系统的性能。

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