Wang Tong-Biao, Zhou Ying, Mu Hong-Qian, Shehzad Khurram, Zhang De-Jian, Liu Wen-Xing, Yu Tian-Bao, Liao Qing-Hua
Department of Physics, Nanchang University, Nanchang 330031, People's Republic of China.
College of Information Science and Electronic Engineering, Zhejiang University, Hangzhou 310027, People's Republic of China.
Nanotechnology. 2022 Mar 23;33(24). doi: 10.1088/1361-6528/ac59e6.
Enhancement of weak Casimir forces is extremely important for their practical detection and subsequent applications in variety of scientific and technological fields. We study the lateral Casimir forces acting on the rotating particles with small radius of 50 nm as well as that with large radius of 500 nm near the hyperbolic metamaterial made of silicon carbide (SiC) nanowires. It is found that the lateral Casimir force acting on the small particle of 50 nm near hyperbolic metamaterial with appropriate filling fraction can be enhanced nearly four times comparing with that acting on the same particle near SiC bulk in the previous study. Such enhancement is caused by the coupling between the resonance mode excited by nanoparticle and the hyperbolic mode supported by hyperbolic metamaterial. The results obtained in this study provide an efficient method to enhance the interaction of nanoscale objects.
增强弱卡西米尔力对于其实际检测以及随后在各种科学和技术领域中的应用极为重要。我们研究了作用在半径为50nm的小旋转粒子以及半径为500nm的大旋转粒子上的横向卡西米尔力,这些粒子靠近由碳化硅(SiC)纳米线制成的双曲型超材料。研究发现,与先前研究中作用在靠近SiC块体的相同粒子上的横向卡西米尔力相比,作用在靠近具有适当填充率的双曲型超材料的50nm小粒子上的横向卡西米尔力可增强近四倍。这种增强是由纳米粒子激发的共振模式与双曲型超材料支持的双曲模式之间的耦合引起的。本研究获得的结果提供了一种增强纳米级物体相互作用的有效方法。