All-dielectric three-element transmissive Huygens' metasurface performing anomalous refraction

被引:30
|
作者
Liu, Chang [1 ,2 ]
Chen, Lei [1 ,3 ]
Wu, Tiesheng [2 ]
Liu, Yumin [1 ]
Li, Jung [1 ]
Wang, Yu [1 ]
Yu, Zhongyuan [1 ]
Ye, Han [1 ]
Yu, Li [1 ]
机构
[1] Beijing Univ Posts & Telecommun, State Key Lab Informat Photon & Opt Commun, Beijing 100876, Peoples R China
[2] Guangxi Key Lab Wireless Wideband Commun & Signal, Guilin 541004, Peoples R China
[3] Univ Arizona, Coll Opt Sci, Tucson, AZ 85721 USA
基金
中国国家自然科学基金;
关键词
POLARIZATION; METALENSES; REFLECTION; SCATTERING; RESOLUTION; PHASE;
D O I
10.1364/PRJ.7.001501
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Metasurfaces have pioneered a new avenue for advanced wave-front engineering. Among the various types of metasurfaces, Huygens' metasurfaces are thought to be a novel paradigm for flat optical devices. Enabled by spectrally overlapped electric resonance and magnetic resonance, Huygens' metasurfaces are imparted with high transmission and full phase coverage of 2 pi, which makes them capable of realizing high-efficiency wave-front control. However, a defect of Huygens' metasurfaces is that their phase profiles and transmissive responses are often sensitive to the interaction of neighboring Huygens' elements. Consequently, the original assigned phase distribution can be distorted. In this work, we present our design strategy of transmissive Huygens' metasurfaces performing anomalous refraction. We illustrate the investigation of Huygens' elements, realizing the overlapping between an electric dipole and magnetic dipole resonance based on cross-shaped structures. We find that the traditional discrete equidistant-phase design method is not enough to realize a transmissive Huygens' surface due to the interaction between neighboring Huygens' elements. Therefore, we introduce an extra optimization process on the element spacing to palliate the phase distortion resulting from the element interaction. Based on this method, we successfully design unequally spaced three-element transmissive metasurfaces exhibiting anomalous refraction effect. The anomalous refractive angle of the designed Huygens' metasurface is 30 degrees, which exceeds the angles of most present transmissive Huygens' metasurfaces. A transmissive efficiency of 83.5% is numerically derived at the operating wavelength. The far-field electric distribution shows that about 93% of transmissive light is directed along the 30 degrees refractive direction. The deflection angle can be tuned by adjusting the number of Huygens' elements in one metasurface unit cell. The design strategies used in this paper can be inspiring for other functional Huygens' metasurface schemes. (C) 2019 Chinese Laser Press
引用
收藏
页码:1501 / 1510
页数:10
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