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Controlling graphene plasmons with a zero-index metasurface

机译:控制石墨烯zero-index等离子体metasurface

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摘要

Graphene plasmons, owing to their diverse applications including electro-optical modulation, optical sensing, spectral photometry and tunable lighting at the nanoscale, have recently attracted much attention. One key challenge in advancing this field is to precisely control the propagation of graphene plasmons. Here, we propose an on-chip integrated platform to engineer the wave front of the graphene plasmons through a metasurface with a refractive index of zero. We demonstrate that a well-designed graphene/photonic-crystal metasurface can possess conical plasmonic dispersion at the Brillouin zone center with a triply degenerate state at the Dirac frequency, giving rise to the zero-effective-index of graphene plasmons. Plane-wave-emission and focusing effects of the graphene plasmons are achieved by tailoring such a zero-index metasurface. In addition to the tunable Dirac point frequency enabled by the electrical tuning of the graphene Fermi level, our highly integrated system also provides stable performance even when defects exist. This actively controllable on-chip platform can potentially be useful for integrated photonic circuits and devices.
机译:石墨烯等离子体,由于各自不同的应用程序包括光电调制、光学传感、分光光度法和可调照明在纳米尺度上最近吸引了太多的关注。推进这一领域的挑战是精确的控制石墨烯等离子体激元的传播。在这里,我们提出一个芯片上集成平台石墨烯的波前等离子体通过metasurface折射指数为零。精心设计的石墨烯/光子晶体metasurface能拥有锥形电浆分散在布里渊区中心三重简并态在狄拉克的频率,引起的zero-effective-index石墨烯等离子体。石墨烯等离子体的影响通过这种zero-index裁剪metasurface。点频率通过电调优石墨烯的费米能级,我们的高度集成系统还提供了稳定即使性能缺陷存在。积极控制芯片上的平台对于集成光子可能有用电路和设备。

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