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Measuring the quantum-limited linewidth of a laser by using the Zeeman effect

机译:使用塞曼效应测量激光的量子限制线宽

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We explore Zeeman operation of a laser as a way to measure its quantum phase noise. We measure the differential phase diffusion of a /spl sigma//sup +/ and a /spl sigma//sup -/ mode; the degeneracy of these modes is lifted by a longitudinal magnetic field. Experiments are performed on a high-gain HeXe gas laser, comparing quantum linewidths measured using this technique with measurements on the same laser using the well-established self-heterodyne technique. The two methods are found to be equivalent when the magnetic field used in the Zeeman technique is sufficiently large. The advantages of the Zeeman technique as compared to the self-heterodyne technique are its extreme simplicity and very modest laser-power requirement.
机译:我们探索激光的塞曼操作作为一种测量其量子相位噪声的方法。我们测量/ spl sigma // sup + /和/ spl sigma // sup-/模式的差分相位扩散;这些模式的简并性通过纵向磁场来消除。实验是在高增益HeXe气体激光器上进行的,将使用该技术测量的量子线宽与使用成熟的自外差技术在同一激光器上进行的测量进行了比较。当在塞曼技术中使用的磁场足够大时,发现这两种方法是等效的。与自外差技术相比,塞曼技术的优势在于其极其简单和非常适中的激光功率要求。

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