Chen Jun, Ng Jack, Ding Kun, Fung Kin Hung, Lin Zhifang, Chan C T
1] Department of Physics, The Hong Kong University of Science and Technology [2] Institute of Theoretical Physics and Department of Physics, Shanxi University [3] State Key Laboratory of Surface Physics, Key Laboratory of Micro and Nano Photonic Structures (MOE), and Department of physics, Fudan University [4].
1] Department of Physics and Institute of Computational and Theoretical Studies, Hong Kong Baptist University [2].
Sci Rep. 2014 Sep 17;4:6386. doi: 10.1038/srep06386.
Light carries angular momentum, and as such it can exert torques on material objects. Applications of these opto-mechanical effects were limited initially due to their smallness in magnitude, but later becomes powerful and versatile after the invention of laser. Novel and practical approaches for harvesting light for particle rotation have since been demonstrated, where the structure is always subjected to a positive optical torque along a certain axis if the incident angular momentum has a positive projection on the same axis. We report here an interesting phenomenon of "negative optical torque", meaning that incoming photons carrying angular momentum rotate an object in the opposite sense. Surprisingly this can be realized quite straightforwardly in simple planar structures. Field retardation is a necessary condition and discrete rotational symmetry of material object plays an important role. The optimal conditions are explored and explained.
光携带角动量,因此它可以对物体施加扭矩。这些光机械效应的应用最初由于其量级较小而受到限制,但在激光发明后变得强大且用途广泛。此后已经证明了用于使粒子旋转来获取光的新颖且实用的方法,如果入射角动量在同一轴上有正投影,那么该结构总是会沿着某个轴受到正的光扭矩。我们在此报告一种有趣的“负光扭矩”现象,即携带角动量的入射光子会使物体沿相反方向旋转。令人惊讶的是,这可以在简单的平面结构中非常直接地实现。场延迟是一个必要条件,物体的离散旋转对称性起着重要作用。我们探索并解释了最佳条件。