反对称关系
朗道量子化
物理
平坦度(宇宙学)
简并能级
凝聚态物理
量子电动力学
朗道阻尼
光子学
量子力学
实现(概率)
光子晶体
波传播
色散关系
色散(光学)
电磁场
联轴节(管道)
电磁辐射
领域(数学)
Dirac(视频压缩格式)
舒布尼科夫-德哈斯效应
点(几何)
经典力学
铁磁性
磁场
作者
Xiao Zhang,Lili Liang,Kai Shao,Feifei Li,Biaobing Jin,Huabing Wang,Yin Poo,Wei Chen,C. T. Chan
摘要
Pseudomagnetic fields (PMFs) have been proven useful for generating Landau levels and controlling wave propagation in classical wave systems. Recently, photonic flat Landau levels residing near the K and K^{'} points induced by PMFs have been realized through uniaxial gradient deformations of superlattices. Here, we report the realization of flat Landau levels near the Γ point in Dirac photonic crystals with wider-range uniaxial gradient deformations, induced by antisymmetric, nonuniform PMFs. The flat Landau levels appear as spatially localized, doubly degenerate bulk modes, and are associated with dispersive valley kink modes. The nonuniform PMF distributions provide an additional degree of freedom that can enhance the flatness of flat Landau levels that extends for an expanded k-space range. We experimentally visualized the band dispersion of flat Landau levels and observed both localized flat Landau level modes and chiral valley kink modes. Our results pave a new avenue for manipulating electromagnetic wave localization and transport via PMFs.
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