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- W4386112194 abstract "Exceptional points (EPs) of non-Hermitian (NH) systems have recently attracted increasing attention due to their rich phenomenology and intriguing applications. Compared to the predominantly studied second-order EPs, higher-order EPs have been assumed to play a much less prominent role because they generically require the tuning of more parameters. Here, we experimentally simulate two-dimensional topological NH band structures using single-photon interferometry, and observe topologically stable third-order EPs obtained by tuning only two real parameters in the presence of symmetry. In particular, we explore how different symmetries stabilize qualitatively different third-order EPs: the parity-time symmetry leads to a generic cube-root dispersion, while a generalized chiral symmetry implies a square-root dispersion coexisting with a flat band. Additionally, we simulate fourfold degeneracies, composed of the non-defective twofold degeneracies and second-order EPs. Our work reveals the abundant and conceptually richer higher-order EPs protected by symmetries and offers a versatile platform for further research on topological NH systems." @default.
- W4386112194 created "2023-08-24" @default.
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- W4386112194 date "2023-08-25" @default.
- W4386112194 modified "2023-10-18" @default.
- W4386112194 title "Experimental simulation of symmetry-protected higher-order exceptional points with single photons" @default.
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- W4386112194 doi "https://doi.org/10.1126/sciadv.adi0732" @default.
- W4386112194 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37611104" @default.
- W4386112194 hasPublicationYear "2023" @default.
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