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Comparison of photonic nanojets key parameters produced by nonspherical microparticles

机译:非球形微粒产生的光子纳米射流关键参数的比较

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Photonic nanojet (PNJ) phenomenon arising near transparent dielectric microparticles subject to plane wave illumination in the visible is considered. The near-field light scattering patterns produced by shaped wavelength-sized particles (hexahedron, cuboid, sphere, hemisphere, axicon, assembled particles) are numerically simulated and key PNJ parameters are analyzed. Particle shape influence on the peak intensity and spatial resolution of produced PNJ is investigated. We demonstrate that due to the reciprocal action of spherical-type and conical-type focusing of the special type of composite particles constituted of a hemisphere and an axicon can produce highly localized PNJ with peak intensity considerable higher than that for isolated regular particle (sphere, microaxicon, hemisphere).
机译:考虑了在可见光中经受平面波照射的透明介电微粒附近产生的光子纳米射流(PNJ)现象。数值模拟了成形的波长大小的粒子(六面体,长方体,球体,半球,轴锥,组合粒子)产生的近场光散射图案,并分析了PNJ关键参数。研究了颗粒形状对所产生的PNJ的峰强度和空间分辨率的影响。我们证明,由于球形和圆锥形聚焦的相互作用,由半球和轴锥构成的特殊类型复合颗粒可以产生高度局部化的PNJ,其峰值强度比隔离的规则粒子(球形, microaxicon,半球)。

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