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基于互易性模拟设计高定向发光相控阵超表面

Designing Highly Directional Luminescent Phased-Array Metasurfaces with Reciprocity-Based Simulations.

作者信息

Heki Larry, Mohtashami Yahya, DeCrescent Ryan A, Alhassan Abdullah, Nakamura Shuji, DenBaars Steven P, Schuller Jon A

机构信息

Materials Department, University of California, Santa Barbara, California 93106, United States.

Department of Electrical and Computer Engineering, University of California, Santa Barbara, California 93106, United States.

出版信息

ACS Omega. 2022 Jun 22;7(26):22477-22483. doi: 10.1021/acsomega.2c01654. eCollection 2022 Jul 5.

Abstract

Phased-array metasurfaces grant the ability to arbitrarily shape the wavefront of light. As such, they have been used as various optical elements including waveplates, lenses, and beam deflectors. Luminescent metasurfaces, on the other hand, have largely comprised uniform arrays and are therefore unable to provide the same control over the wavefront of emitted light. Recently, phased-array control of the wavefront of spontaneous emission has been experimentally demonstrated in luminescent phased-array metalenses and beam deflectors. However, current luminescent metasurface beam deflectors exhibit unidirectional emission for only p-polarized light. In this paper, we use a reciprocal simulation strategy to explain the polarization disparity and improve the directionality of incoherent emission from current quantum-well emitting phased-array metasurfaces. We also design complementary metasurfaces to direct emission from systems where emission originates from alternate quantum mechanical processes.

摘要

相控阵超表面赋予了任意塑造光波前的能力。因此,它们已被用作包括波片、透镜和光束偏转器在内的各种光学元件。另一方面,发光超表面在很大程度上由均匀阵列组成,因此无法对发射光的波前提供同样的控制。最近,在发光相控阵超透镜和光束偏转器中已通过实验证明了自发发射波前的相控阵控制。然而,目前的发光超表面光束偏转器仅对p偏振光表现出单向发射。在本文中,我们使用一种互易模拟策略来解释偏振差异,并提高当前量子阱发射相控阵超表面非相干发射的方向性。我们还设计了互补超表面,以引导来自发射源于交替量子力学过程的系统的发射。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d83/9260934/26f4a030574c/ao2c01654_0002.jpg

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