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Bipolar optical forces in coupled photonic crystal cavities

机译:耦合光子晶体腔中的双极光学力

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Due to their high quality (Q) factors, resonance modes of cavities are capable of generating much larger optical gradient forces than waveguide modes. Here we experimentally demonstrate the use of resonance modes of double-coupled one-dimensional photonic crystal cavities to generate bipolar optical forces. Mechanical and thermal detunings of the probe resonance modes of the device are calibrated respectively with a nanoelectromechanical system (NEMS) actuator and a temperature-controlled testing platform. Detuning due to the optomechanical effect is hence decoupled from that of the thermo-optic effect. Pumped by third-order even (odd) mode, one cavity is pulled to (pushed away from) the other cavity by 37.1 nm (11.4 nm).
机译:由于它们的高质量(Q)因子,腔的共振模式能够产生比波导模式更大的光学梯度力。在这里,我们通过实验证明了双耦合一维光子晶体腔的谐振模式来产生双极光力。器件的机械和热损伤分别用纳米机电系统(NEMS)致动器和温度控制的测试平台校准。因此,由于光学力学效应而失去的损伤是从热视光效应的解耦。通过三阶甚至(奇数)模式泵送,将一个空腔拉到另一个腔37.1nm(11.4nm)。

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