Mitri F G
J Opt Soc Am A Opt Image Sci Vis. 2016 Sep 1;33(9):1661-7. doi: 10.1364/JOSAA.33.001661.
Energy and angular momentum flux density characteristics of an optical nondiffracting nonparaxial vector Bessel vortex beam of fractional order are examined based on the dual-field method for the generation of symmetric electric and magnetic fields. Should some conditions determined by the polarization state, the half-cone angle as well as the beam-order (or topological charge) be met, the axial energy and angular momentum flux densities vanish (representing Poynting singularities), before they become negative. These negative counterintuitive properties suggest retrograde (negative) propagation as well as a rotation reversal of the angular momentum with respect to the beam handedness. These characteristics of nondiffracting nonparaxial Bessel fractional vortex beams of progressive waves open new capabilities in optical tractor beam tweezers, optical spanners, invisibility cloaks, optically engineered metamaterials, and other applications.
基于用于生成对称电场和磁场的双场方法,研究了分数阶光学非衍射非傍轴矢量贝塞尔涡旋光束的能量和角动量通量密度特性。如果满足由偏振态、半锥角以及光束阶数(或拓扑电荷)确定的某些条件,轴向能量和角动量通量密度在变为负值之前会消失(表示坡印廷奇点)。这些负的、违反直觉的特性表明存在逆行(负)传播以及角动量相对于光束手性的旋转反转。这些行波的非衍射非傍轴贝塞尔分数涡旋光束的特性在光学牵引光束镊子、光学扳手、隐形斗篷、光学工程超材料及其他应用中开辟了新的能力。