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Single fiber dual-functionality optical tweezers based on graded-index multimode fiber

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【作者】 刘志海王通张亚勋汤晓云刘佩坤张羽杨兴华张建中杨军苑立波

【Author】 Zhihai Liu;Tong Wang;Yaxun Zhang;Xiaoyun Tang;Peikun Liu;Yu Zhang;Xinghua Yang;Jianzhong Zhang;Jun Yang;Libo Yuan;Key Laboratory of In-fiber Integrated Optics,Ministry of Education,Harbin Engineering University;National Demonstration Center for Experimental Physics Education,Harbin Engineering University;Photonics Research Center,Guilin University of Electronics Technology;

【机构】 Key Laboratory of In-fiber Integrated Optics,Ministry of Education,Harbin Engineering UniversityNational Demonstration Center for Experimental Physics Education,Harbin Engineering UniversityPhotonics Research Center,Guilin University of Electronics Technology

【摘要】 We propose and demonstrate single fiber dual-functionality optical tweezers based on a graded-index multimode fiber. By using the multi-angle fiber grinding and polishing technology, we fabricate the multimode fiber tip to be a special tapered shape, contributing to focus the outgoing beam with a large intensity gradient for the first functionality—three-dimensional contactless trapping of a microparticle. By adjusting the radial direction offset between the lead-in single mode fiber and the graded-index multimode fiber, we perform the second functionality—axial shift of the trapped microparticle with respect to the fiber tip without need of moving the fiber probe itself. It is convenient for practical applications. The theoretical and experimental results about the relationship between the radial offset and the equilibrium positions of the microparticle have the good consistency. Tailoring the trap and axial shift of the microparticle based on the graded-index multimode fiber provides convenient avenues for fiber optical tweezers applied in practical researches.

【Abstract】 We propose and demonstrate single fiber dual-functionality optical tweezers based on a graded-index multimode fiber. By using the multi-angle fiber grinding and polishing technology, we fabricate the multimode fiber tip to be a special tapered shape, contributing to focus the outgoing beam with a large intensity gradient for the first functionality—three-dimensional contactless trapping of a microparticle. By adjusting the radial direction offset between the lead-in single mode fiber and the graded-index multimode fiber, we perform the second functionality—axial shift of the trapped microparticle with respect to the fiber tip without need of moving the fiber probe itself. It is convenient for practical applications. The theoretical and experimental results about the relationship between the radial offset and the equilibrium positions of the microparticle have the good consistency. Tailoring the trap and axial shift of the microparticle based on the graded-index multimode fiber provides convenient avenues for fiber optical tweezers applied in practical researches.

【基金】 supported by the National Natural Science Foundation of China(Nos.11574061,61405043,and 61675053);the 111 Project(No.B13015);the Fundamental Research Funds for Harbin Engineering University of China
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2018年05期
  • 【分类号】TN253
  • 【被引频次】5
  • 【下载频次】89
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