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Optical forces of focused femtosecond laserpulses on nonlinear optical Rayleigh particles 被引量:10
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作者 LIPING GONG BING GU +3 位作者 GUANGHAO RUI YIPING CUI ZHUQING ZHU QIWEN ZHAN 《Photonics Research》 SCIE EI 2018年第2期138-143,共6页
The principle of optical trapping is conventionally based on the interaction of optical fields with linear-induced polarizations. However, the optical force originating from the nonlinear polarization becomes signific... The principle of optical trapping is conventionally based on the interaction of optical fields with linear-induced polarizations. However, the optical force originating from the nonlinear polarization becomes significant when nonlinear optical nanoparticles are trapped by femtosecond laser pulses. Herein we develop the time-averaged optical forces on a nonlinear optical nanoparticle using high-repetition-rate femtosecond laser pulses, based on the linear and nonlinear polarization effects. We investigate the dependence of the optical forces on the magnitudes and signs of the refractive nonlinearities. It is found that the self-focusing effect enhances the trapping ability, whereas the self-defocusing effect leads to the splitting of the potential well at the focal plane and destabilizes the optical trap. Our results show good agreement with the reported experimental observations and provide theoretical support for capturing nonlinear optical particles. 展开更多
关键词 (190.3270) Kerr effect (140.7010) Laser trapping (350.4990) Particles (190.7110) Ultrafast nonlinear optics.
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All-optical manipulation of micrometer-sized metallic particles 被引量:6
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作者 YUQUAN ZHANG XIUJIE Dou +3 位作者 YANMENG DAI XIANYOU WANG CHANGJUN MIN AND XIAOCONG YUAN 《Photonics Research》 SCIE EI 2018年第2期66-71,共6页
Optical traps use focused laser beams to generate forces on targeted objects ranging in size from nanometers to micrometers. However, for their high coefficients of scattering and absorption, micrometer-sized metallic... Optical traps use focused laser beams to generate forces on targeted objects ranging in size from nanometers to micrometers. However, for their high coefficients of scattering and absorption, micrometer-sized metallic particles were deemed non-trappable in three dimensions using a single beam. This barrier is now removed. We demon- strate, both in theory and experiment, three-dimensional (3D) dynamic all-optical manipulations of micrometer- sized gold particles under high focusing conditions. The force of gravity is found to balance the positive axial optical force exerted on particles in an inverted optical tweezers system to form two trapping positions along the vertical direction. Both theoretical and experimental results confirm that stable 3D manipulations are achievable for these particles regardl for a variety of in-depth ess of beam polarization and wavelength. research requiting metallic particles. The present work opens up new opportunities . 展开更多
关键词 (350.4855) Optical tweezers or optical manipulation (140.7010) Laser trapping (350 3950) Micro-optics.
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