Minin Igor V, Minin Oleg V, Cao Yinghui, Liu Zhenyu, Geints Yuri E, Karabchevsky Alina
Tomsk Polytechnic University, 36 Lenin Avenue, Tomsk, 634050, Russia.
Tomsk State University, 30 Lenin Avenue, Tomsk, 634050, Russia.
Sci Rep. 2019 Sep 4;9(1):12748. doi: 10.1038/s41598-019-49277-9.
Here, we propose the concept of an "optical vacuum cleaner" for optomechanical manipulation of nanoparticles. We utilize a dielectric cuboid to generate an optical gradient force exerted on the nanoparticles for particle's hovering and trapping. We show that the permittivity contrast between the particle and the nanohole leads to the deep subwavelength light confinement and enhancement at the opening of the nanohole located at the shadow surface of the particle. The proposed "optical vacuum cleaner" can be utilized in optomechanical manipulations on particles such as noble metal nanoparticles adsorbed on surfaces or controlling the particles taking part in cellular uptake.
在此,我们提出了一种用于纳米粒子光机械操纵的“光学真空吸尘器”概念。我们利用一个介电长方体来产生施加在纳米粒子上的光学梯度力,以实现粒子的悬浮和捕获。我们表明,粒子与纳米孔之间的介电常数对比度会导致在位于粒子阴影表面的纳米孔开口处出现深亚波长光限制和增强。所提出的“光学真空吸尘器”可用于对诸如吸附在表面的贵金属纳米粒子等粒子进行光机械操纵,或控制参与细胞摄取的粒子。