Stability-enhanced RF signal transmission over long fiber-optic links

被引:0
|
作者
尹知谦 [1 ]
郑满航 [1 ]
张川博 [1 ]
管世健 [1 ]
周昕 [1 ]
刘奕彤 [1 ]
刚泽宇 [1 ]
聂佳强 [1 ]
张云山 [2 ]
朱兴邦 [3 ]
方涛 [1 ]
陈向飞 [1 ]
机构
[1] Engineering Research Center of Precision Photonics Integration and System Application,Ministry of Education & Key Laboratory of Intelligent Optical Sensing and Manipulation,Ministry of Education & National Laboratory of Solid State Microstructures & Colleg
[2] College of Electronics and Optical Engineering and College of Flexible Electronics (Future Technology),Nanjing University of Posts and Telecommunications
[3] The st Research Institute of China Electronics Technology Group
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TN253 [光纤元件];
学科分类号
摘要
We propose a method for optimizing the phase stability of microwave signal transmission over long distances.First,the design of the photon link was modified to reduce the radio frequency (RF) signal's baseline noise and increase power.Second,a low-noise driver circuit was developed for a two-section distributed feedback (DFB) laser designed using reconstruction equivalent chirp (REC) technology to create an ultra-stable laser,and its performance was characterized through linewidth data.Test results indicate that the DFB laser achieved narrower linewidth,improving system phase stability.When an injection current (30 mA) is applied to the reflection section of the two-section DFB laser,the laser linewidth will be narrower (1.38 MHz),further enhancing the system's phase transmission stability.At a 1 Hz offset frequency,a residual phase noise of -88.65 dBc/Hz is obtained.The short-term stability with an averaging time of 1s is 1.60×10-14,and the long-term stability over a testing time of 60,000s is 3.41×10-18.Even after incorporating temperature variations,the long-term stability reaches 8.37×10-18 at 22 h.
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页码:136 / 141
页数:6
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