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The Efficient Excitation of High-Order Hyperbolic Phonon Polaritons in Boron Nitride Nanoshells
Xiaokang Dai1,2, Chenchen Wu1, Xiaowen Zhang3
1Laboratory of Nanophotonic Materials and Devices, Laboratory of Standardization and Measurement for Nanotechnology, National Center for Nanoscience and Technology, Beijing 100190, China.
Abstract:
High-order hyperbolic phonon polaritons provide superior light confinement and multimodal information pathways, offering a new degree for manipulating light at deep-subwavelength scales. However, their efficient excitation remains challenging due to the stringent requirements for both large wavevector composition and spatial symmetry matching. In this work, we demonstrate that zero-dimensional hexagonal boron nitride nanoshells (BNNSs), featuring atomically smooth nanocavities with high light field confinement, enable effective excitation of high-order hyperbolic phonon polariton whispering gallery modes (HHPP-WGMs). Using electron energy loss spectroscopy, we directly observed the HHPP-WGMs in BNNSs. Moreover, we show that BNNS-supported HHPP-WGMs can function as multimodal optical sources for coupling with hBN waveguides. By tailoring the sidewall thickness of BNNSs, the excitation amplitude ratio of the first high-order hyperbolic phonon polariton to the fundamental hyperbolic polariton can be tuned from 0.05 to 2 in hBN waveguides. These findings establish BNNSs as a promising platform for developing advanced multimodal nanophotonic devices.
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