Aalto University, School of Electrical Engineering, P.O. Box 13000, 00076, Aalto, Finland.
Laboratory Nanooptomechanics, ITMO University, St. Petersburg, 197101, Russia.
Sci Rep. 2017 Jul 21;7(1):6155. doi: 10.1038/s41598-017-06307-8.
We predict the existence of lateral drag forces near the flat surface of an absorbing slab made of an anisotropic material. The forces originate from the fluctuations of the electromagnetic field, when the anisotropy axis of the material forms a certain angle with the surface. In this situation, the spatial spectra of the fluctuating electromagnetic fields becomes asymmetric, different for positive and negative transverse wave vectors components. Differently from the case of van der Waals interactions in which the forward-backward symmetry is broken due to the particle movement, in our case the lateral motion results merely from the anisotropy of the slab. This new effect, of particular significance in hyperbolic materials, could be used for the manipulation of nanoparticles.
我们预测了各向异性材料平板吸收体附近存在横向拖拽力。当材料的各向异性轴与表面形成一定角度时,这些力源于电磁场的涨落。在这种情况下,涨落电磁场的空间谱变得不对称,正、负横向波矢分量不同。与由于粒子运动而打破向前-向后对称性的范德瓦尔斯相互作用情况不同,在我们的情况下,横向运动仅仅是由于平板的各向异性引起的。这种在双曲材料中具有特殊意义的新效应,可用于控制纳米粒子。