表面声波硅光子电路中的电光机械微波频率振荡器

M. Priel, S. Bag, Matan Slook, Leroy Dokhanian, I. Shafir, Etai Grunwald, M. Katzman, Mirit Hen, A. Zadok
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引用次数: 0

摘要

通过硅光子电路演示了一种电光机械微波频率振荡器。电信号调制光泵浦波输入。调制通过金属光栅的吸收和热弹性膨胀在硅电路上转换为表面声波。通过在跑道谐振器波导中对连续光输入探测波进行光弹性调制,将声波延迟并转换回光学。对输出探头进行检测,将得到的电压放大并反馈,以调制输入光泵浦波。在有足够反馈增益的情况下,光电机械环被驱动到2.21 GHz频率的振荡。该振荡器可用于集成微波光子学信号的处理。
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Electro-Opto-Mechanical Microwave-Frequency Oscillator in a Surface Acoustic Wave Silicon-Photonic Circuit
An electro-opto-mechanical microwave frequency oscillator is demonstrated through a silicon photonic circuit. An electrical signal modulates an optical pump wave input. Modulation is converted to a surface acoustic wave on the silicon circuit through absorption in a metallic grating and thermoelastic expansion. The acoustic wave is delayed and converted back to optics through photoelastic modulation of a continuous optical input probe wave in a racetrack resonator waveguide. The output probe is detected, and the obtained voltage is amplified and fed back to modulate the input optical pump wave. With sufficient feedback gain, the electro-opto-mechanical loop is driven to oscillations at 2.21 GHz frequency. The oscillator can be useful for integrated microwave photonics signal processing.
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