光子晶体
物理
可见的
凝聚态物理
微波食品加热
方格
反射(计算机编程)
带隙
Dirac(视频压缩格式)
电子能带结构
量子力学
中微子
计算机科学
伊辛模型
程序设计语言
作者
Zheng Wang,Y. D. Chong,John D. Joannopoulos,Marin Soljačić
标识
DOI:10.1103/physrevlett.100.013905
摘要
We point out that electromagnetic one-way edge modes analogous to quantum Hall edge states, originally predicted by Raghu and Haldane in 2D photonic crystals possessing Dirac point-derived band gaps, can appear in more general settings. We show that the TM modes in a gyromagnetic photonic crystal can be formally mapped to electronic wave functions in a periodic electromagnetic field, so that the only requirement for the existence of one-way edge modes is that the Chern number for all bands below a gap is nonzero. In a square-lattice yttrium-iron-garnet crystal operating at microwave frequencies, which lacks Dirac points, time-reversal breaking is strong enough that the effect should be easily observable. For realistic material parameters, the edge modes occupy a 10% band gap. Numerical simulations of a one-way waveguide incorporating this crystal show 100% transmission across strong defects.
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