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Tight Focusing Properties of Azimuthally Polarized Pair of Vortex Beams through a Dielectric Interface 被引量:1
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作者 C. A. P. Janet M. Lavanya +3 位作者 K. B. Rajesh M. Udhayakumar Z. Jaroszewicz D. Velauthapillai 《Chinese Physics Letters》 SCIE CAS CSCD 2017年第7期109-113,共5页
Tight focusing properties of an azimuthally polarized Gaussian beam with a pair of vortices through a dielectric interface is theoretically investigated by vector diffraction theory. For the incident beam with a pair ... Tight focusing properties of an azimuthally polarized Gaussian beam with a pair of vortices through a dielectric interface is theoretically investigated by vector diffraction theory. For the incident beam with a pair of vortices of opposite topological charges, the vortices move toward each other, annihilate and revive in the vicinity of focal plane, which results in the generation of many novel focal patterns. The usable focal structures generated through the tight focusing of the double-vortex beams may find applications in micro-particle trapping, manipulation, and material processing, etc. 展开更多
关键词 Tight focusing Properties of azimuthally Polarized Pair of Vortex Beams through a Dielectric Interface
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Three-dimensional multiple optical cages formed by focusing double-ring shaped radially and azimuthally polarized beams 被引量:2
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作者 Tingting Zeng Jianping Ding 《Chinese Optics Letters》 SCIE EI CAS CSCD 2018年第3期44-47,共4页
We propose and simulate a method for generating a three-dimensional (3D) optical cage in the vicinity of focus by focusing a double-ring shaped radially and azimuthally polarized beam. Our study shows that the combi... We propose and simulate a method for generating a three-dimensional (3D) optical cage in the vicinity of focus by focusing a double-ring shaped radially and azimuthally polarized beam. Our study shows that the combination of an inner ring with an azimuthally polarized field and an outer ring with a radially polarized field and a phase factor can produce an optical cage with a dark region enclosed by higher intensity. The shape of the cage can be tailored by appropriately adjusting the parameters of double-mode beams. Furthermore, multiple 3D optical cages can be realized by applying the shift theorem of the Fourier transform and macro-pixel sampling algorithm to a double-ring shaped radially and azimuthally polarized beam. 展开更多
关键词 Three-dimensional multiple optical cages formed by focusing double-ring shaped radially and azimuthally polarized beams
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