Sadrara Mahdiyeh, Miri MirFaez
Department of Physics, University of Tehran, P.O. Box 14395-547, Tehran, Iran.
Sci Rep. 2019 Feb 27;9(1):2926. doi: 10.1038/s41598-018-35833-2.
We study electric and magnetic hotspots in the gap between hollow InSb microspheres forming dimers and trimers. The outer radius, core volume fraction, distance, and temperature of the microspheres can be chosen to achieve field enhancement at a certain frequency corresponding to the transition between energy levels of a molecule placed in the gap. For example, utilizing 80 μm radius spheres at a gap of 2 μm held at a temperature of 295 K, allow electric field intensity enhancements of 10-2880 and magnetic field intensity enhancements of 3-61 in the frequency window 0.35-1.50 THz. The core volume fraction and the ambient temperature affect the enhancements, particularly in the frequency window 1.5-2 THz. Electric and magnetic hotspots are promising for THz absorption and circular dichroism spectroscopy.
我们研究了形成二聚体和三聚体的中空锑化铟微球之间间隙中的电热点和磁热点。可以选择微球的外半径、核体积分数、距离和温度,以在与置于间隙中的分子能级跃迁相对应的特定频率下实现场增强。例如,使用半径为80μm的球体,间隙为2μm,温度保持在295K,在0.35 - 1.50太赫兹的频率窗口内,电场强度可增强10 - 2880倍,磁场强度可增强3 - 61倍。核体积分数和环境温度会影响增强效果,特别是在1.5 - 2太赫兹的频率窗口内。电热点和磁热点在太赫兹吸收和圆二色光谱方面具有潜力。