论文标题
使用超材料结构的光学操纵
Optical manipulation with metamaterial structures
论文作者
论文摘要
光的光镊,利用光线基础的重要操纵工具在许多应用和生物物理学领域中产生的力。常规的光学镊子基于折射光学元件,它们需要过多的辅助光学元件来重塑振幅和相位,以及光的波形和角动量,因此对光学系统的整体成本和整合施加了限制。超材料在亚波长的光学结构中同时提供电动和光学诱导的磁反应,并且它们对许多应用所需的光的前所未有的控制非常有益,这也为光学操作打开了新的机会。在这里,我们回顾了采用超材料(所谓的元透明剂)的物理和概念的光学镊子领域的最新进展,并证明超材料结构不仅可以通过颗粒(例如捕获,运输和分类)来提高经典操作,还可以揭示出诸如外来光学光学的力量,例如拉动和稍后的力量。值得注意的是,除了操纵颗粒之外,可以通过光动态驱动元结构来实现巧妙的元机器人。我们为这一领域的未来机会提供了前景,从增强的粒子操纵到元机器人驱动。
Optical tweezers employing forces produced by light underpin important manipulation tools in many areas of applied and biological physics. Conventional optical tweezers are based on refractive optics, and they require excessive auxiliary optical elements to reshape both amplitude and phase, as well as wavevector and angular momentum of light, and thus impose limitations to the overall cost and integration of optical systems. Metamaterials provide both electric and optically induced magnetic response in subwavelength optical structures, and they are highly beneficial to achieve unprecedented control of light required for many applications, also opening new opportunities for optical manipulation. Here, we review the recent advances in the field of optical tweezers employing the physics and concepts of metamaterials (the so-called meta-tweezers) and demonstrate that metamaterial structures could not only advance classical operations with particles, such as trapping, transporting, and sorting, but they uncover exotic optical forces such as pulling and lateral forces. Remarkably, apart from manipulation of particles, metastructures can be powered dynamically by light to realize ingenious meta-robots. We provide an outlook for future opportunities in this area ranging from enhanced particle manipulation to meta-robot actuation.