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Hybridization of Non-Hermitian Topological Interface Modes
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We propose and experimentally demonstrate the hybridization of radiating topological interface states, analogous to Jackiw-Rebbi states but in gain media with radiation fields. This hybridization not only modifies energy levels under a strong coupling scheme but also significantly reshapes far-field radiation characteristics. The bonding mode exhibits sub-radiant, omnidirectional emission, while the antibonding mode becomes super-radiant and highly unidirectional. Crucially, this non-Hermitian hybridization is tunable, allowing simultaneous control of energy splitting, quality factor, and far-field radiation by varying the distance between the two topological interfaces. Our findings establish hybridized radiating topological interface states as a robust platform for engineering two-level systems with tailored far-field responses, offering new possibilities for applications in beam shaping, nonlinear optics, quantum technologies, and beyond.
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Cited by 1 Pith paper
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Topological Jackiw-Rebbi States in Photonic Van der Waals Heterostructures
Jackiw-Rebbi interface states are realized in stacked van der Waals WS2 gratings and used to directionally enhance exciton emission from an embedded WSe2 monolayer.
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