论文标题
纳米颗粒上的横向后坐力光学作用在非置换表面附近
Lateral recoil optical forces on nanoparticles near nonreciprocal surfaces
论文作者
论文摘要
我们研究了施加在具有平面非偏射反应的等离激元平台附近的纳米颗粒上的侧后坐力。为此,我们首先基于瑞利近似中的洛伦兹力结合非重新认真的格林功能,建立一个基于洛伦兹力的全面理论框架,然后得出模型的横向后坐力力量的近似分析表达式,证明了它们明确的依赖于系统的分散体关系,并消除了控制它们的机制。特别是,由于该平台支持的非邻次表面等离子等离子的动量失衡,出现了主要的横后力组件。该力可以是比其他后坐力组件大的数量级,仅沿外部偏见的方向起作用,并且是入射平面波的方向,极化和波长的准依赖性的。使用漂移偏置的石墨烯Metasurfaces探索了侧后升力,该平台还建议将纳米颗粒作为其大小的函数进行排序。非偏腹等离子体系统可以使新的场所能够捕获,结合和操纵纳米颗粒,并减轻常规光学镊子的一些挑战。
We investigate lateral recoil forces exerted on nanoparticles located near plasmonic platforms with in-plane nonreciprocal response. To this purpose, we first develop a comprehensive theoretical framework based on the Lorentz force within the Rayleigh approximation combined with nonreciprocal Green's functions and then derive approximate analytical expressions to model lateral recoil forces, demonstrating their explicit dependence on the dispersion relation of the system and unveiling the mechanisms that govern them. In particular, a dominant lateral recoil force component appears due to the momentum imbalance of nonreciprocal surface plasmons supported by the platform. This force can be orders of magnitude larger than other recoil force components, acts only along or against the direction of the external bias, and is quasi-independent of the direction, polarization, and wavelength of the incident plane wave. Lateral recoil forces are explored using drift-biased graphene metasurfaces, a platform that is also proposed to sort nanoparticles as a function of their size. Nonreciprocal plasmonic systems may enable new venues to trap, bind, and manipulate nanoparticles and to alleviate some of the challenges of conventional optical tweezers.