Han Juzheng, Chen Rushan
Opt Express. 2020 Sep 28;28(20):30289-30298. doi: 10.1364/OE.403631.
In this paper, a broadband and tunable terahertz absorber based on a graphene metasurface in a sandwiched structure is introduced. A single-layered graphene patterned with hollow-out squares is applied in this design, which is continuously connected to provide convenience for electrical tuning and fabrication. Plasmonic coupling and hybridization inside the graphene pattern can significantly enhance the absorption bandwidth. Moreover, polarization-insensitive and omnidirectional performances are also guaranteed by the symmetrical design. Full wave simulations demonstrate that the absorber exhibits over 90% absorbance within 1.14∼3.31 THz with a fractional bandwidth up to 97.5%. The device reveals tunable absorbance from 14% to almost 100% by manipulating the graphene chemical potential from 0 to 0.9 eV. When the incident angle sweeps up to 55°, the absorbance remains more than 90% from 1.77 to 3.42 THz for TE polarization, while over 90% absorbance maintains around 3.3 THz for TM polarization. These superior abilities guarantee the applicability of the presented absorber in THz cloaking, tunable sensor and photovoltaic devices.
本文介绍了一种基于三明治结构石墨烯超表面的宽带可调太赫兹吸收器。该设计采用了镂空正方形图案的单层石墨烯,其连续连接为电调谐和制造提供了便利。石墨烯图案内部的等离子体耦合和杂化可显著提高吸收带宽。此外,对称设计还保证了偏振不敏感和全向性能。全波模拟表明,该吸收器在1.14∼3.31太赫兹范围内的吸收率超过90%,分数带宽高达97.5%。通过将石墨烯化学势从0调节到0.9电子伏特,该器件的吸收率可从14%调节到几乎100%。当入射角扫描到55°时,对于TE偏振,在1.77至3.42太赫兹范围内吸收率保持超过90%,而对于TM偏振,在3.3太赫兹左右吸收率保持超过90%。这些优异性能保证了所提出的吸收器在太赫兹隐身、可调传感器和光伏器件中的适用性。