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Strong magnetochiral dichroism in chiral/magnetic layered heterostructures

机译:手性/磁性分层异质结构的强磁影二分

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In this Letter, we propose a nonreciprocal heterostructure which combines magnetism and chirality in a simple, easy-to-fabricate design and exhibits at least two orders of magnitude larger magnetochiral dichroism, compared to other proposed metamaterials. This effect stems from the simultaneous lack of time-reversal and space-inversion symmetries and is enhanced by collective slow-photon modes originating from the strong bending of the photonic bands at the Brillouin zone boundaries. We investigate the optical properties of this bianisotropic multilayer heterostructure, consisting of consecutive bilayers of chiral and magnetic materials, embedded in air, and discuss the associated photonic band structure and transmission/absorption spectra obtained by means of full electrodynamic calculations. (C) 2018 Optical Society of America
机译:在这封信中,我们提出了一种非透视异质结构,它以简单,易于制造的设计,与其他提出的超材料相比,将磁性和手性结合在简单,易于制造的设计中,并表现出至少两个较大的磁影仪二色性的磁性分层。 这种效果源于同时缺乏时间逆转和空间反转对称,并且通过源自布里渊区边界处的光子带的强弯曲的集体慢光子模式而增强。 我们研究了这种双直级多层异质结构的光学性质,包括嵌入空气中的手性和磁性材料的连续双层,并讨论通过全电动力学计算获得的相关光子带结构和传输/吸收光谱。 (c)2018年光学学会

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