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Photonic generation of millimeter and terahertz waves with high phase stability

机译:具有高相位稳定性的毫米波和太赫兹波的光子产生

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摘要

Optical generation of highly stable millimeter and terahertz waves is proposed and experimentally demonstrated. The optical-fiber-path-induced phase fluctuation is identically transferred to a 40 MHz intermediate frequency by using dual-heterodyne phase error transfer, then canceled by a phase-locked loop. Based on the scheme, highly stable signals within the frequency range from 25 GHz to 1 THz are generated, and the phase jitter is decreased from 2.05 rad to 4.7 mrad in the frequency range from 0.01 Hz to 1 MHz. For 1 THz, the residual phase noise reaches -60 dBc/Hz at 1 Hz frequency offset from the carrier, and the relative timing jitter is reduced to 0.7 fs.
机译:提出并实验证明了高度稳定的毫米波和太赫兹波的光学产生。通过使用双外差相位误差传递,将光纤路径引起的相位波动相同地传递到40 MHz中频,然后由锁相环消除。根据该方案,将生成在25 GHz至1 THz频率范围内的高度稳定的信号,并且在0.01 Hz至1 MHz的频率范围内,相位抖动将从2.05 rad降低到4.7 mrad。对于1 THz,残余相位噪声在距载波1 Hz的频率偏移处达到-60 dBc / Hz,并且相对定时抖动降低至0.7 fs。

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