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光束的开普勒定律。

Kepler's law for optical beams.

作者信息

Jaimes-Nájera A, Gómez-Correa J E, Iturbe-Castillo M D, Pu Jixiong, Chávez-Cerda S

出版信息

Opt Express. 2020 Oct 12;28(21):31979-31992. doi: 10.1364/OE.403726.

Abstract

It is well known that optics and classical mechanics are intimately related. One of the most important concepts in classical mechanics is that of a particle in a central potential that leads to the Newtonian description of the planetary dynamics. Within this, a relevant result is Kepler's second law that is related to the conservation of orbital angular momentum, one of the fundamental laws in physics. In this paper, we demonstrate that it is possible to find the conditions that allow us to state Kepler's second law for optical beams with orbital angular momentum by analyzing the streamlines of their energy flow. We find that the optical Kepler's law is satisfied only for cylindrical symmetric beams in contrast to the classical mechanics situation that is satisfied for the other conic geometries, namely, parabolic, elliptical and hyperbolic. We propose a novel approach to confirm our analytic results: we observe the propagation of the Arago's spot created by a beam with orbital angular momentum as a local "light-tracer" instead of looking at the propagation of the whole beam. The observed patterns fully agree with the prediction of our formalism.

摘要

众所周知,光学与经典力学密切相关。经典力学中最重要的概念之一是处于中心势场中的粒子,这导致了对行星动力学的牛顿描述。在此框架内,一个相关结果是开普勒第二定律,它与轨道角动量守恒相关,而轨道角动量守恒是物理学的基本定律之一。在本文中,我们证明通过分析具有轨道角动量的光束的能量流线,可以找到允许我们阐述光学光束开普勒第二定律的条件。我们发现,光学开普勒定律仅适用于圆柱对称光束,这与经典力学情况不同,在经典力学中,对于其他圆锥几何形状,即抛物线、椭圆和双曲线形状,该定律均适用。我们提出了一种新颖的方法来证实我们的分析结果:我们观察由具有轨道角动量的光束产生的阿喇戈光斑的传播,将其作为局部“光示踪剂”,而不是观察整个光束的传播。观察到的图案与我们形式体系的预测完全一致。

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