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Noise properties of microwave signals synthesized with femtosecond lasers

机译:飞秒激光合成的微波信号的噪声特性

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摘要

We discuss various aspects of high resolution measurements of phase fluctuations at microwave frequencies. This includes methods to achieve thermal noise limited sensitivity, along with the improved immunity to oscillator amplitude noise. A few prototype measurement systems were developed to measure phase fluctuations of microwave signals extracted from the optical pulse trains generated by femtosecond lasers. This enabled first reliable measurements of the excess phase noise associated with optical-to-microwave frequency division. The spectral density of the excess phase noise was found to be -140 dBc/Hz at 100 Hz offset from the 10 GHz carrier which was almost 40 dB better than that of a high quality microwave synthesizer
机译:我们讨论了微波频率下相位波动的高分辨率测量的各个方面。这包括实现热噪声受限灵敏度的方法,以及提高的对振荡器幅度噪声的抗扰性。开发了一些原型测量系统,以测量从飞秒激光器产生的光脉冲序列中提取的微波信号的相位波动。这样就可以对与光-微波频分相关的多余相位噪声进行首次可靠测量。发现从10 GHz载波偏移100 Hz时,多余相位噪声的频谱密度为-140 dBc / Hz,这比高质量微波合成器高出近40 dB

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