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  • 1. ChinaXiv:202303.01043
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    Ideal type-II Weyl points in twisted one-dimensional dielectric photonic crystals

    分类: 光学 >> 量子光学 提交时间: 2023-02-19

    Ying Chen Hai-xiao Wang Qiaoliang Bao Jian-Hua Jiang Huanyang Chen

    摘要: Weyl points are the degenerate points in three-dimensional momentum space with nontrivial topological phase, which are usually realized in classical system with structure and symmetry designs. Here we proposed a one-dimensional layer-stacked photonic crystal using anisotropic materials to realize ideal type-II Weyl points without structure designs. The topological transition from two Dirac points to four Weyl points can be clearly observed by tuning the twist angle between layers. Besides, on the interface between the photonic type-II Weyl material and air, gappless surface states have also been demonstrated in an incomplete bulk bandgap. By breaking parameter symmetry, these ideal type-II Weyl points at the same frequency would transform into the non-ideal ones, and exhibit topological surface states with single group velocity. Our work may provide a new idea for the realization of photonic Weyl points or other semimetal phases by utilizing naturally anisotropic materials.

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  • 2. ChinaXiv:202303.01113
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    Tailoring topological transition of anisotropic polaritons by interface engineering in biaxial crystals

    分类: 光学 >> 量子光学 提交时间: 2023-02-19

    Yali Zeng Qingdong Ou Lu Liu Chunqi Zheng Ziyu Wang Youning Gong Xiang Liang Yupeng Zhang Guangwei Hu Zhilin Yang Cheng-Wei Qiu Qiaoliang Bao Huanyang Chen Zhigao Dai

    摘要: Polaritons in polar biaxial crystals with extreme anisotropy offer a promising route to manipulate nanoscale light-matter interactions. The dynamical modulation of their dispersion is great significance for future integrated nano-optics but remains challenging. Here, we report a momentum-directed strategy, a coupling between the modes with extra momentum supported by the interface and in-plane hyperbolic polaritons, to tailor topological transitions of anisotropic polaritons in biaxial crystals. We experimentally demonstrate such tailored polaritons at the interface of heterostructures between graphene and {\alpha}-phase molybdenum trioxide ({\alpha}-MoO3). The interlayer coupling can be electrically modulated by changing the Fermi level in graphene, enabling a dynamic topological transition. More interestingly, we found that the topological transition occurs at a constant Fermi level when tuning the thickness of {\alpha}-MoO3. The momentum-directed strategy implemented by interface engineering offers new insights for optical topological transitions, which may shed new light for programmable polaritonics, energy transfer and neuromorphic photonics.

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友情链接 : PubScholar 哲学社会科学预印本
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