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首页> 外文期刊>IEEE Journal of Quantum Electronics >Noise measurements in two-beam interferometers excited by semiconductor lasers with non-Lorentzian line shapes
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Noise measurements in two-beam interferometers excited by semiconductor lasers with non-Lorentzian line shapes

机译:非洛伦兹线形半导体激光器激发的两光束干涉仪中的噪声测量

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摘要

An experimental study of phase-induced intensity noise is presented for the case of a Mach-Zehnder interferometer driven by a non-Lorentzian line shape semiconductor laser. The important scales of the noise spectrum in the coherent regime are shown to be related not only to the interferometer differential delay but also to the relaxation-oscillation frequency. It is shown that the periodic nulls in the noise spectrum from a two-beam interferometer locked in quadrature can be washed out at frequencies near the relaxation oscillations of the semiconductor laser. However, when the relaxation-oscillation frequency far exceeds 1/(interferometer differential delay), the classical deep notch at 1/(interferometer differential delay) is recovered and can be used to improve the system signal-to-noise ratio.
机译:针对由非洛伦兹线形半导体激光器驱动的Mach-Zehnder干涉仪的情况,进行了相位感应强度噪声的实验研究。在相干状态下,噪声频谱的重要尺度不仅与干涉仪的微分延迟有关,而且与弛豫振荡频率有关。结果表明,可以在接近半导体激光器的弛豫振荡的频率上冲掉正交锁定的两束干涉仪的噪声频谱中的周期性零点。但是,当张弛振荡频率远远超过1 /(干涉仪微分延迟)时,可以恢复1 /(干涉仪微分延迟)的经典深陷波,可用于改善系统信噪比。

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