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The Effect of Light Source Line Width on the Spectrum Resolution of Dual-Frequency Coherent Detection Signals

机译:光源线宽对双频相干检测信号频谱分辨率的影响

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摘要

In this paper, the power spectrum resolution problem of dual-frequency coherent mixing signals is analyzed when the Doppler frequency difference is small. The power spectrum function formula of the four optical coherent mixing signals is obtained using statistical theory and the Wiener–Khinchin theorem. The influence of delay time and light source line width on the power spectrum of dual-frequency coherent signals is analyzed using this formula. The results show that delay time only affects the peak of the power spectrum of the coherent signal. An increase in the line width of the light source broadens the signal power spectrum and reduces the peak value. The necessary condition for distinguishing the Doppler frequency difference is that the theoretical Doppler frequency difference is greater than 1/5 times the line width of the light source.
机译:本文分析了多普勒频差较小时双频相干混合信号的功率谱分辨率问题。使用统计理论和Wiener-Khinchin定理获得四个光学相干混合信号的功率谱函数公式。利用该公式分析了延迟时间和光源线宽对双频相干信号功率谱的影响。结果表明,延迟时间仅影响相干信号功率谱的峰值。光源的线宽增加会加宽信号功率谱并降低峰值。区分多普勒频率差的必要条件是理论多普勒频率差大于光源线宽的1/5倍。

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