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光子石墨烯中谷依赖光束的观测

Observation of valley-dependent beams in photonic graphene.

作者信息

Deng Fusheng, Sun Yong, Wang Xiao, Xue Rui, Li Yuan, Jiang Haitao, Shi Yunlong, Chang Kai, Chen Hong

出版信息

Opt Express. 2014 Sep 22;22(19):23605-13. doi: 10.1364/OE.22.023605.

Abstract

Valley-dependent propagation of light in an artificial photonic hexagonal lattice, akin to electrons in graphene, is investigated in microwave regime. Both numerical and experimental results show that the valley degeneracy in the photonic graphene is broken when the frequency is away from the Dirac point. The peculiar anisotropic wave transport property due to distinct valleys is analyzed using the equifrequency contours. More interestingly, the valley-dependent self-collimation and beam splitting phenomena are experimentally demonstrated with the armchair and zigzag interfaces, respectively. Our results confirm that there are two inequivalent Dirac points that lead to two distinct valleys in photonic graphene, which could be used to control the flow of light and might be used to carry information in valley polarized beam splitter, collimator or guiding device.

摘要

在微波波段研究了光在人工光子六角晶格中的谷依赖传播,这类似于石墨烯中的电子。数值和实验结果均表明,当频率远离狄拉克点时,光子石墨烯中的谷简并被打破。利用等频线分析了由于不同谷导致的特殊各向异性波传输特性。更有趣的是,分别通过扶手椅形和锯齿形界面在实验上证明了谷依赖的自准直和光束分裂现象。我们的结果证实,在光子石墨烯中有两个不等价的狄拉克点,它们导致两个不同的谷,这可用于控制光流,并可能用于在谷极化分束器、准直器或波导装置中携带信息。

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