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Nanomechanical Optical Fiber with Embedded Electrodes Actuated by Joule Heating

机译:焦耳加热驱动嵌入电极的纳米机械光纤

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摘要

Nanomechanical optical fibers with metal electrodes embedded in the jacket were fabricated by a multi-material co-draw technique. At the center of the fibers, two glass cores suspended by thin membranes and surrounded by air form a directional coupler that is highly temperature-dependent. We demonstrate optical switching between the two fiber cores by Joule heating of the electrodes with as little as 0.4 W electrical power, thereby demonstrating an electrically actuated all-fiber microelectromechanical system (MEMS). Simulations show that the main mechanism for optical switching is the transverse thermal expansion of the fiber structure.
机译:通过多材料共拉伸技术制造了嵌入金属金属电极的纳米机械光纤。在纤维的中央,两个被薄膜悬挂并被空气包围的玻璃芯形成了高度依赖温度的定向耦合器。我们演示了通过电极的焦耳加热以低至0.4 W的电功率在两个光纤芯之间进行光切换,从而演示了电驱动的全光纤微机电系统(MEMS)。仿真表明,光交换的主要机制是纤维结构的横向热膨胀。

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