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实验演示了门可调谐石墨烯-金可重构中红外超材料中的 >230° 相位调制。

Experimental Demonstration of >230° Phase Modulation in Gate-Tunable Graphene-Gold Reconfigurable Mid-Infrared Metasurfaces.

机构信息

Northrop Grumman Corporation, NG Next Nanophotonics & Plasmonics Laboratory, Redondo Beach, California 90278, United States.

Department of Physics, University of Wisconsin-Madison , Madison, Wisconsin 53706, United States.

出版信息

Nano Lett. 2017 May 10;17(5):3027-3034. doi: 10.1021/acs.nanolett.7b00359. Epub 2017 Apr 28.

Abstract

Metasurfaces offer significant potential to control far-field light propagation through the engineering of the amplitude, polarization, and phase at an interface. We report here the phase modulation of an electronically reconfigurable metasurface and demonstrate its utility for mid-infrared beam steering. Using a gate-tunable graphene-gold resonator geometry, we demonstrate highly tunable reflected phase at multiple wavelengths and show up to 237° phase modulation range at an operating wavelength of 8.50 μm. We observe a smooth monotonic modulation of phase with applied voltage from 0° to 206° at a wavelength of 8.70 μm. Based on these experimental data, we demonstrate with antenna array calculations an average beam steering efficiency of 23% for reflected light for angles up to 30° for this range of phases, confirming the suitability of this geometry for reconfigurable mid-infrared beam steering devices. By incorporating all nonidealities of the device into the antenna array calculations including absorption losses which could be mitigated, 1% absolute efficiency is achievable up to 30°.

摘要

超表面在控制远场光传播方面具有重要的潜力,通过在界面处对振幅、偏振和相位进行工程设计来实现。我们在此报告一种可电重构的超表面的相位调制,并展示其在中红外光束转向方面的应用。我们利用栅极可调谐的石墨烯-金谐振器结构,在多个波长下实现了高度可调谐的反射相位,并在 8.50μm 的工作波长下展示了高达 237°的相位调制范围。我们观察到在 8.70μm 的波长下,随着外加电压从 0°到 206°,相位呈现出平滑的单调调制。基于这些实验数据,我们通过天线阵列计算证明,对于该相位范围内的角度高达 30°的反射光,平均光束转向效率为 23%,这证实了这种结构在可重构中红外光束转向器件中的适用性。通过将器件的所有非理想因素包括吸收损耗纳入天线阵列计算中(这些损耗可以得到缓解),在 30°的范围内可以实现 1%的绝对效率。

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