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Nanoscale phase modulator and optical switch based on graphene-coated fiber

机译:基于石墨烯涂层光纤的纳米级相位调制器和光学开关

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The new, to the best of our knowledge, phase modulator and optical switch based on graphene-coated fiber are proposed and studied. The fields of surface plasmon polaritons (SPP) modes are highly concentrated on the graphene so that very high effective indices (>400) can be achieved. By virtue of this feature, the dimensions of these devices can be as small as several nanometers in length. The minimum transmission losses for the phase modulator and optical switch are 0.54 dB and 0.18 dB, respectively. The maximum voltage adjustment range needed is only 0.3 V. The optical switch possesses a complete switch-off state and is adaptable to variation in phase difference and light intensity. The performance of these devices can be effectively tuned by the parameters, such as the graphene-coated lengths and the applied voltages. These devices may have important applications in fiber-based systems and other nanoscale optic and optoelectronic systems. (C) 2020 Optical Society of America
机译:提出并研究了新的,据我们所知,并研究了基于石墨烯涂层光纤的相位调制器和光学开关。 表面等离子体(SPP)模式的表面高度集中在石墨烯上,从而可以实现非常高的有效索引(> 400)。 借助于该特征,这些装置的尺寸可以长度为几纳米。 相位调制器和光学开关的最小传输损耗分别为0.54dB和0.18 dB。 所需的最大电压调节范围仅为0.3 V.光学开关具有完整的关断状态,适用于相位差和光强度的变化。 这些装置的性能可以通过参数有效地调整,例如石墨烯涂覆的长度和施加的电压。 这些设备可以在光纤的系统和其他纳米级视光和光电系统中具有重要应用。 (c)2020美国光学学会

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    《Applied optics》 |2020年第20期|共6页
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