论文标题

北极星蜂窝晶格中的半迪拉克传输和各向异性定位

Semi-Dirac Transport and Anisotropic Localization in Polariton Honeycomb Lattices

论文作者

Real, B., Jamadi, O., Milićević, M., Pernet, N., St-Jean, P., Ozawa, T., Montambaux, G., Sagnes, I., Lemaître, A., Gratiet, L. Le, Harouri, A., Ravets, S., Bloch, J., Amo, A.

论文摘要

压缩大大改变了石墨烯的传输和定位特性。当粒子跳跃在晶格的不同方向上时,这与狄拉克锥的对称性的变化密切相关。特别是,对于临界压缩,半迪拉克锥由垂直方向的无质量和大量分散形成。在这里,我们展示了在实现半迪拉克锥体的耦合微柱的蜂窝晶格中极性转运的直接证据。如果我们从光学地诱导晶格中的空缺缺陷,则观察到单个Sublattice中的各向异性局部偏振子分布,这是半迪拉克分散体的结果。我们的工作为研究具有手性对称性和异国情调的狄拉克分散体的晶格中的运输和定位开辟了新的视野。

Compression dramatically changes the transport and localization properties of graphene. This is intimately related to the change of symmetry of the Dirac cone when the particle hopping is different along different directions of the lattice. In particular, for a critical compression, a semi-Dirac cone is formed with massless and massive dispersions along perpendicular directions. Here we show direct evidence of the highly anisotropic transport of polaritons in a honeycomb lattice of coupled micropillars implementing a semi-Dirac cone. If we optically induce a vacancy-like defect in the lattice, we observe an anisotropically localized polariton distribution in a single sublattice, a consequence of the semi-Dirac dispersion. Our work opens up new horizons for the study of transport and localization in lattices with chiral symmetry and exotic Dirac dispersions.

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