4.6 Article

Broadband linear-to-circular polarization converter based on phosphorene metamaterial

Journal

OPTICAL MATERIALS EXPRESS
Volume 9, Issue 5, Pages 2088-2097

Publisher

OPTICAL SOC AMER
DOI: 10.1364/OME.9.002088

Keywords

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Funding

  1. National Natural Science Foundation of China (NSFC) [61661012]
  2. Natural Science Foundation of Guangxi Zhuang Autonomous Region [2017GXNSFBA198121, 2018GXNSFAA281190]
  3. Dean Project of Guangxi Key Laboratory of Wireless Wideband Communication and Signal Processing [GXKL06160108, GXKL06170104]
  4. Dean Laboratory of Cognitive Radio and Information Processing

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We propose a broadband reflective linear-to-circular (LTC) polarization converter in a mid-infrared regime based on monolayer black phosphorus (phosphorene) metamaterial. The proposed converter consists of periodic unit cells, each cell of which is formed by multiple phosphorene layers, a dielectric layer, and a fully reflective gold mirror. In the frequency range of 14.20 and 23.10 THz, the magnitudes of the reflection coefficients are approximately equal and the phase difference value between the two orthogonal electric field components of the reflected wave is close to pi/2 or -3 pi/2, which indicates the reflective wave can be deemed the circular polarization with the incidence of linearly polarized wave. The simulation results show that the relative bandwidth of LTC polarization conversion reaches 58% and 47.8%, respectively, when the pucker ridge alignment of the phosphorene is perpendicular to the y-direction and x-direction. Finally, the physical mechanism is revealed via the field decomposition and current distribution. This polarization converter has great potential for future applications in electronic measurement, photonic design, and in some other optoelectronic systems. (C) 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement

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