Zhou Jiaxin, Wang Yueke, Lu Mengjia, Ding Jian, Zhou Lei
Optical Information Science and Technology Department, Jiangnan University Wuxi Jiangsu 214122 China
Optoelectronic Engineering and Technology Research Center, Jiangnan University Wuxi Jiangsu 214122 China.
RSC Adv. 2019 Oct 21;9(58):33775-33780. doi: 10.1039/c9ra05760a. eCollection 2019 Oct 18.
In this letter, we propose a structure based on double-layer graphene-based planar chiral metasurface with a J-shaped pattern to generate asymmetric transmission for circularly polarized waves in the mid-infrared region. Asymmetric transmission of the double-layer structure can reach to 16.64%, which is much larger than that of the monolayer. The mechanism of asymmetric transmission is attributed to enantiomerically sensitive graphene's surface plasmons. Besides, asymmetric transmission can be dynamically tuned by changing the Fermi energy and is affected by intrinsic relaxation time. All simulations are conducted by the finite element method. Our findings provide a feasibility of realizing photonic devices in tunable polarization-dependent operation, such as asymmetric wave splitters and circulators.
在这封信中,我们提出了一种基于双层石墨烯基平面手性超表面的结构,该超表面具有J形图案,用于在中红外区域产生圆偏振波的非对称传输。双层结构的非对称传输率可达16.64%,远高于单层结构。非对称传输的机制归因于对映体敏感的石墨烯表面等离子体激元。此外,非对称传输可以通过改变费米能量进行动态调谐,并受固有弛豫时间的影响。所有模拟均采用有限元方法进行。我们的研究结果为实现可调谐偏振相关操作的光子器件提供了可行性,例如非对称波分束器和环行器。