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A General Relation Between Frequency Noise and Lineshape of Laser Light

机译:频率噪声与激光线厚度的一般关系

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Lasers and especially semiconductor lasers (SCLs) are playing a major role in advanced technological and scientific tasks ranging from sensing, fundamental investigations in quantum optics and communications. The demand for ever-increasing accuracy and communication rates has driven these applications to employ phase modulation and coherent detection. The main laser attribute that comes into play is its coherence which is usually quantified by either the Schawlow-Townes (S-T) linewidth, the spectral width of the laser field, or the power spectral density (PSD) function of the laser frequency fluctuation. In this paper, we present a derivation of a general and direct relationship between these two coherence measures. We refer to the result as the Central Relation. The relation applies independently of the physical origin of the noise. Experiments are described which demonstrate the validity of the Central Relation and at the same time suggest new methods of controlling frequency noise at base band by optical filtering.
机译:激光器尤其是半导体激光器(SCL)在高级技术和科学任务中发挥着重要作用,从传感,对量子光学和通信中的传感,基本调查。对不断增长的准确性和通信率的需求使这些应用程序采用相位调制和相干检测。发挥作用的主要激光属性是其相干性,其通常通过ScaLow-Townes(S-T)线宽,激光场的光谱宽度或激光频率波动的功率谱宽度(PSD)功能量化。在本文中,我们展示了这两个连贯措施之间一般和直接关系的推导。我们将结果称为核心关系。关系适用于噪声的物理来源。描述了实验,其展示了中央关系的有效性,同时表达了通过光学滤波控制基带控制频率噪声的新方法。

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