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Giant and tunable optical torque for micro-motors by increased force arm and resonantly enhanced force

机译:通过增加的力臂和谐振增强力的微电机进行巨大和可调谐光学扭矩

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Micro-motors driven by light field have attracted much attentions for their potential applications. In order to drive the rotation of a micro-motor, structured optical beams with orbital angular momentum, spin angular momentum, anisotropic medium, and/or inhomogeneous intensity distribution should be used. Even though, it is still challenge to increase the optical torques (OT) in a flexible and controllable way in case of moderate incident power. In this paper, a new scheme achieving giant optical torque is proposed by increasing both the force arm and the force amplitude with the assistance of a ring resonator. In this case, the optical torque doesn’t act on the target directly by the incident beam, but is transmitted to it by rotating the ring resonator connected with it. Using the finite-difference in time-domain method, we calculate the optical torque and find that both the direction and the amplitude of the torque can be tuned flexibly by modifying the frequency, or the relative phases of the sources. More importantly, the optical torque obtained here by linearly polarized beams can be 3 orders larger than those obtained using the structured beams. This opt-mechanical-resonator based optical torque engineering system may find potential applications in optical driven micro-machines.
机译:由轻场驱动的微电机吸引了潜在应用的极大关注。为了驱动微电机的旋转,应使用具有轨道角动量的结构化光束,旋转角动量,各向异性介质和/或不均匀强度分布。即使,在中等入射功率的情况下以柔性可控的方式增加光学扭矩(OT)仍然挑战。在本文中,提出了一种实现巨型光学扭矩的新方案,通过在环谐振器的帮助下增加力臂和力幅度来提出。在这种情况下,光学扭矩不能通过入射光束直接作用于目标,而是通过旋转与其连接的环谐振器传输到其上。使用时间域方法的有限差异,我们计算光学扭矩,并找到扭矩的方向和幅度,通过修改频率或源的相对阶段可以灵活地调整。更重要的是,通过线性偏振梁获得的光学扭矩可以是3比使用结构化梁获得的光扭矩。基于光学驱动的微机器的基于Opt-Machinic-Aryator基的光学扭矩工程系统可能在光学驱动的微机器中找到潜在的应用。

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