首页> 外文会议>Conference on Photonic Integrated Systems Jan 28-30, 2003 San Jose, California, USA >Opto-Electronic Oscillator with Improved Phase Noise and Frequency Stability
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Opto-Electronic Oscillator with Improved Phase Noise and Frequency Stability

机译:具有改善的相位噪声和频率稳定性的光电振荡器

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In this paper we report on recent improvements in phase noise and frequency stability of a 10 GHz opto-electronic oscillator. In our OEO loop, the high Q elements (the optical fiber and the narrow bandpass microwave filter) are thermally stabilized using resistive heaters and temperature controllers, keeping their temperature above ambient. The thermally stabilized free running OEO demonstrates a short-term frequency stability of 0.02 ppm (over several hours) and frequency vs. temperature slope of-0.1 ppm/℃ (compared to -8.3 ppm/℃ for non thermally stabilized OEO). We obtained an exceptional spectral purity with phase noise level of -143 dBc/Hz at 10 kHz of offset frequency. We also describe the multi-loop configuration that reduces dramatically the spurious level at offset frequencies related to the loop round trip harmonic frequency. The multi-loop configuration has stronger mode selectivity due to interference between signals having different cavity lengths. A drop of the spurious level below -90 dBc was demonstrated. The effect of the oscillator aging on the frequency stability was studied as well by recording the oscillator frequency (in a chamber) over several weeks. We observed reversal in aging direction with logarithmic behavior of A·ln(B·t+l)-C·ln(D·t+l), where t is the time and A, B, C, D are constants. Initially, in the first several days, the positive aging dominates. However, later the negative aging mechanism dominates. We have concluded that the long-term aging behavioral model is consistent with the experimental results.
机译:在本文中,我们报告了10 GHz光电振荡器在相位噪声和频率稳定性方面的最新改进。在我们的OEO回路中,使用电阻加热器和温度控制器对高Q元素(光纤和窄带通微波滤波器)进行热稳定,使其温度高于环境温度。热稳定的自由运行OEO表现出0.02 ppm(在数小时内)的短期频率稳定性以及-0.1 ppm /℃的频率与温度的斜率(非热稳定的OEO则为-8.3 ppm /℃)。我们获得了出色的频谱纯度,在10 kHz偏移频率下的相位噪声水平为-143 dBc / Hz。我们还描述了多环路配置,该配置可大大降低与环路往返谐波频率相关的偏移频率处的杂散电平。由于具有不同腔长的信号之间的干扰,多回路配置具有更强的模式选择性。结果表明,杂散电平下降到-90 dBc以下。还通过记录振荡器在几个星期内的频率(在一个室内)来研究振荡器老化对频率稳定性的影响。我们观察到了老化方向的逆转,其对数行为为A·ln(B·t + 1)-C·ln(D·t + 1),其中t为时间,A,B,C,D为常数。最初,在最初的几天中,正衰老占主导地位。但是,后来负面的衰老机制占据了主导地位。我们得出的结论是,长期老化行为模型与实验结果一致。

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