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首页> 外文期刊>Physical Review, A >Superposition of nonparaxial vectorial complex-source spherically focused beams: Axial Poynting singularity and reverse propagation
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Superposition of nonparaxial vectorial complex-source spherically focused beams: Axial Poynting singularity and reverse propagation

机译:叠加非横向矢量复合源球形聚焦光束:轴向划线奇异性和反向传播

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摘要

In this work, counterintuitive effects such as the generation of an axial (i.e., long the direction of wave motion) zero-energy flux density (i.e., axial Poynting singularity) and reverse (i.e., negative) propagation of nonparaxial quasi-Gaussian electromagnetic (EM) beams are examined. Generalized analytical expressions for the EM field's components of a coherent superposition of two high-order quasi-Gaussian vortex beams of opposite handedness and different amplitudes are derived based on the complex-source-point method, stemming from Maxwell's vector equations and the Lorenz gauge condition. The general solutions exhibiting unusual effects satisfy the Helmholtz andMaxwell's equations. The EM beam components are characterized by nonzero integer degree and order (n,m), respectively, an arbitrary waist w_0, a diffraction convergence length known as the Rayleigh range z_R, and a weighting (real) factor 0 ≤ α ≤ 1 that describes the transition of the beam from a purely vortex (α = 0) to a nonvortex (α = 1) type. An attractive feature for this superposition is the description of strongly focused (or strongly divergent) wave fields. Computations of the EM power density as well as the linear and angular momentum density fluxes illustrate the analysis with particular emphasis on the polarization states of the vector potentials forming the beams and the weight of the coherent beam superposition causing the transition from the vortex to the nonvortex type. Should some conditions determined by the polarization state of the vector potentials and the beam parameters be met, an axial zero-energy flux density is predicted in addition to a negative retrograde propagation effect. Moreover, rotation reversal of the angular momentum flux density with respect to the beam handedness is anticipated, suggesting the possible generation of negative (left-handed) torques. The results are particularly useful in applications involving the design of strongly focused optical laser tweezers
机译:在这项工作中,诸如产生轴向(即,长度的波动方向)零能量磁通密度(即,轴向Poynting奇异性)和反向(即负)传播的轴向(即,轴向普陀奇异度)的逆向效果(即,负)的逆转(即,检查EM)梁。基于复杂源点法,推导出两种高阶Quarsian涡流的相干叠加的相干叠加的普通分析表达式的两次高阶Qorex梁的组件,从麦克斯韦的载体方程和Lorenz测量条件源。表现出不寻常效果的一般解决方案满足了Helmholtz和Maxwell等式。 EM束组件的特征在于非零整数度和顺序(n,m),分别是任意腰部w_0,称为瑞利范围z_r的衍射收敛长度,以及描述的加权(实际)因子0≤α≤1光束从纯涡流(α= 0)的过渡到非vortex(α= 1)型。该叠加的有吸引力的特征是强烈聚焦(或强烈不同)波场的描述。 EM功率密度以及线性和角动量密度通量的计算说明了特别强调形成形成光束的矢量电位的偏振状态的分析,以及相干梁叠加的重量导致从涡旋到非vortex的转变类型。如果由矢量电位的偏振状态和光束参数确定的一些条件,除了负逆行传播效果之外,还预测了轴向零能量磁通密度。此外,预期了相对于梁手的角动量磁通密度的旋转反转,暗示了负(左手)扭矩的可能产生。结果在涉及强烈的光学激光镊子设计的应用中特别有用

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