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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Topological polaritons from photonic Dirac cones coupled to exdtons in a magnetic field
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Topological polaritons from photonic Dirac cones coupled to exdtons in a magnetic field

机译:来自光子Dirac锥的拓扑极化子与磁场中的激子耦合

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We introduce an alternative scheme for creating topological polaritons (topolaritons) by exploiting the presence of photonic Dirac cones in photonic crystals with triangular lattice symmetry. As recently proposed, topolariton states can emerge from a coupling between photons and excitons combined with a periodic exciton potential and a magnetic field to open up a topological gap. We show that in photonic crystals the opening of the gap can be substantially simplified close to photonic Dirac points. Coupling to Zeeman-split excitons breaks time reversal symmetry and allows to gap out the Dirac cones in a nontrival way, leading to a topological gap similar to the strength of the periodic exciton potential. Compared to the original topolariton proposal [T. Karzig et ah, Phys. Rev. X 5, 031001 (2015)], this scheme significantly increases the size of the topological gap over a wide range of parameters. Moreover, the gap opening mechanism highlights an interesting connection between topolaritons and the scheme of [F. D. M. Haldane and S. Raghu, Phys. Rev. Lett. 100, 013904 (2008)] to create topological photons in magneto-optically active materials.
机译:我们介绍了通过利用三角晶格对称的光子晶体中存在的光子Dirac锥来创建拓扑极化子(topolariton)的替代方案。如最近提出的,极化子态可以通过光子与激子之间的耦合,周期性的激子电势和磁场结合而形成,从而形成拓扑间隙。我们表明,在光子晶体中,靠近光子Dirac点的间隙的开口可以大大简化。与塞曼分裂激子的耦合破坏了时间反转的对称性,并允许以非平凡的方式使狄拉克锥脱离,从而导致类似于周期性激子势强度的拓扑间隙。与最初的极化方案相比[T. Karzig等人,物理学。 Rev. X 5,031001(2015)],此方案可在很大范围的参数上显着增加拓扑间隙的大小。此外,间隙开放机制突出了极化子与[F. D. M. Haldane和S. Raghu,物理学牧师100,013904(2008)]在磁光活性材料中创建拓扑光子。

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