ARC Centre of Excellence for Nanoscale BioPhotonics, School of Science, RMIT University, Melbourne, VIC 3001, Australia.
Sci Rep. 2016 Sep 9;6:32892. doi: 10.1038/srep32892.
Ultrasound is a valuable biomedical imaging modality and diagnostic tool. Here we theoretically demonstrate that a single dipole plasmonic nanoantenna can be used as an optical hydrophone for MHz-range ultrasound. The nanoantenna is tuned to operate on a high-order plasmon mode, which provides an increased sensitivity to ultrasound in contrast to the usual approach of using the fundamental dipolar plasmon resonance. Plasmonic nanoantenna hydrophones may be useful for ultrasonic imaging of biological cells, cancer tissues or small blood vessels, as well as for Brillouin spectroscopy at the nanoscale.
超声是一种有价值的生物医学成像模式和诊断工具。在这里,我们从理论上证明,单个偶极子等离子体纳米天线可用作 MHz 范围超声的光声换能器。该纳米天线被调谐为工作在高阶等离子体模式,与通常使用基本偶极子等离子体共振的方法相比,这提供了对超声的更高灵敏度。等离子体纳米天线水声换能器可用于生物细胞、癌症组织或小血管的超声成像,以及纳米尺度的布里渊光谱学。