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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Hybrid Integrated Optical Phase-Lock Loops for Photonic Terahertz Sources
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Hybrid Integrated Optical Phase-Lock Loops for Photonic Terahertz Sources

机译:用于光子太赫兹源的混合集成光学锁相环

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We present the first hybrid-integrated optical phase-lock loop (OPLL) for use in high spectral purity photonic terahertz sources. We have achieved the necessary short loop delay to lock a 1-MHz linewidth slave laser by hybrid integration of the slave laser and photodetector on a silicon motherboard with silica optical waveguides and combining this with a custom-designed low-delay electronic loop filter circuit. The laser and photodetectors are InP-based and are flip chip bonded to silicon daughter boards, which are in turn attached to the motherboard. Delay between the slave laser and photodiode was approximately 50 ps. The heterodyne between slave and master sources has a linewidth of less than 1 kHz and achieved phase noise less than -80 dBc/Hz at an offset of 10 kHz. The slave laser can be offset from the master source by 2–7 GHz, using a microwave oscillator. This integrated OPLL circuit was used with an optical comb source and an injection-locked laser comb filter to generate high spectral purity signals at frequencies up to 300 GHz with linewidths <1 kHz and powers of about -20 dBm, while the two integrated lasers could deliver a tunable heterodyne signal at frequencies up to 1.8 THz.
机译:我们提出了第一个用于高光谱纯度光子太赫兹源的混合集成光学锁相环(OPLL)。通过将子激光器和光电探测器在硅母板上与二氧化硅光波导的混合集成,并将其与定制设计的低延迟电子环路滤波器电路相结合,我们已经实现了必要的短环路延迟,以锁定1 MHz线宽的子激光器。激光和光电探测器基于InP,并倒装芯片结合到硅子板上,硅子板又连接到母板上。从激光器和光电二极管之间的延迟约为50 ps。从源和主源之间的外差具有小于1kHz的线宽,并且在10kHz偏移处实现的相位噪声小于-80dBc / Hz。通过使用微波振荡器,从激光器可以从主光源偏移2-7 GHz。该集成的OPLL电路与一个光梳源和一个注入锁定激光梳状滤波器一起使用,以产生高达300 GHz的频率,线宽<1 kHz和功率约为-20 dBm的高光谱纯度信号,而这两个集成激光器可以在高达1.8 THz的频率下提供可调外差信号。

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