色散(光学)
对称性破坏
光子学
光子晶体
物理
对称(几何)
Dirac(视频压缩格式)
凝聚态物理
量子力学
几何学
数学
中微子
作者
Hai Son Nguyen,Florian Dubois,Thierry Deschamps,Sébastien Cueff,Antonin Pardon,Jean‐Louis Leclercq,Christian Seassal,Xavier Letartre,Pierre Viktorovitch
标识
DOI:10.1103/physrevlett.120.066102
摘要
We demonstrate that symmetry breaking opens a new degree of freedom to tailor energy-momentum dispersion in photonic crystals. Using a general theoretical framework in two illustrative practical structures, we show that breaking symmetry enables an on-demand tuning of the local density of states of the same photonic band from zero (Dirac cone dispersion) to infinity (flatband dispersion), as well as any constant density over an adjustable spectral range. As a proof of concept, we demonstrate experimentally the transformation of the very same photonic band from a conventional quadratic shape to a Dirac dispersion, a flatband dispersion, and a multivalley one. This transition is achieved by finely tuning the vertical symmetry breaking of the photonic structures. Our results provide an unprecedented degree of freedom for optical dispersion engineering in planar integrated photonic devices.
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