等离子体子
角动量
物理
旋涡
光学
表面等离子体子
光的轨道角动量
总角动量
量子力学
作者
Da‐Jie Yang,Song‐Jin Im,Yang Li,Chol-Song Ri,Kum-Song Ho,Ji-Song Pae,Qu‐Quan Wang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-06-06
卷期号:22 (12): 5015-5021
被引量:2
标识
DOI:10.1021/acs.nanolett.2c01926
摘要
The orbital angular momentum (OAM) of light offers a new degree of freedom for light-matter interactions, yet how to control such interactions with this physical dimension remains open. Here, by developing a numerical method enabling optical OAM simulations, we provide insights into complex plasmon behaviors with the physical dimension of OAM, and we prove in theory that plasmonic nanostructures can function as efficient antennas to intercept and directionally reradiate the power of OAM beams. The interplay between optical OAM and spin angular momentum (SAM) generates novel particle polarizations and radiations, which were inaccessible before. For arrayed nanoparticles, coherent surface plasmons with specific phase retardations determined by OAM of the beams enable directional power radiations, making a phased array antenna. These findings expand our knowledge of nanoplasmonics in the OAM area and are promising for quantum information processing and dynamic sensing of ultraweak biosignals.
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