Polarization-independent perfect absorber enabled by quasibound states in the continuum

被引:0
|
作者
School of Engineering and Information Technology, University of New South Wales, Canberra [1 ]
ACT
2600, Australia
机构
来源
Phys. Rev. B | 2021年 / 23卷
基金
澳大利亚研究理事会;
关键词
Optoelectronic devices - Q factor measurement - Polarization;
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摘要
Light absorption plays a vital role in governing the performance of optoelectronic devices, such as solar cells and photodetectors. However, it is quite challenging to realize perfect absorption for materials with low intrinsic dissipative losses and requires the careful design of nanoscale structures. This study theoretically proposes a polarization-independent germanium (Ge) metasurface absorber at the telecommunication C band by exploring the quasibound state in the continuum (QBIC). Such a QBIC is excited by breaking the in-plane symmetry of the Ge metasurface in which each unit cell is made of four subwavelength Ge nanodisks. The Q factor of QBIC is mainly governed by the asymmetry parameter, providing a straightforward way of optimizing the light absorption by the critical coupling. We demonstrate two designs that boost the absorption up to 50% in the transmission and up to 100% in the reflection modes. © 2021 American Physical Society.
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