材料科学
极化子
声子
光谱学
激发态
布里渊光谱学
凝聚态物理
光学
光电子学
分子物理学
原子物理学
激光器
布里渊散射
物理
量子力学
作者
Zhenyu Zhang,Tao Wang,Hailing Jiang,Ruishi Qi,Yuehui Li,Jinlin Wang,Shanshan Sheng,Ning Li,Ruochen Shi,Jiaqi Wei,Fang Liu,Shengnan Zhang,Xiaoqing Huo,Jinlong Du,Jingmin Zhang,Jun Xu,Xin Rong,Peng Gao,Bo Shen,Xinqiang Wang
标识
DOI:10.1002/adma.202204884
摘要
Abstract Phonon polaritons, quasiparticles arising from strong coupling between electromagnetic waves and optical phonons, have potential for applications in subdiffraction imaging, sensing, thermal conduction enhancement, and spectroscopy signal enhancement. A new class of phonon polaritons in low‐symmetry monoclinic crystals, hyperbolic shear polaritons (HShPs), have been verified recently in β ‐Ga 2 O 3 by free electron laser (FEL) measurements. However, detailed behaviors of HShPs in β ‐Ga 2 O 3 nanostructures still remain unknown. Here, by using monochromatic electron energy loss spectroscopy in conjunction with scanning transmission electron microscopy, the experimental observation of multiple HShPs in β ‐Ga 2 O 3 in the mid‐infrared (MIR) and far‐infrared (FIR) ranges is reported. HShPs in various β ‐Ga 2 O 3 nanorods and a β ‐Ga 2 O 3 nanodisk are excited. The frequency‐dependent rotation and shear effect of HShPs reflect on the distribution of EELS signals. The propagation and reflection of HShPs in nanostructures are clarified by simulations of electric field distribution. These findings suggest that, with its tunable broad spectral HShPs, β ‐Ga 2 O 3 is an excellent candidate for nanophotonic applications.
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