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期刊信息
  • 主管单位:
  • 中国科学技术协会
  • 主办单位:
  • 中国仪器仪表学会、上海光学仪器研究所、中国光学学会工程光学专业委员会
  • 主  编:
  • 庄松林
  • 地  址:
  • 上海市军工路516号上海理工大学《光学仪器》编辑部
  • 邮政编码:
  • 200093
  • 联系电话:
  • 021-55270110
  • 电子邮件:
  • gxyq@usst.edu.cn
  • 国际标准刊号:
  • 1005-5630
  • 国内统一刊号:
  • 31-1504/TH
  • 邮发代号:
  • 单  价:
  • 15.00
  • 定  价:
  • 90.00
基于双环形旋涡相位调制的多焦点产生
Multi-focal spots formed by the modulation of double ring-shape vortex phase plate
  
DOI:
中文关键词:  拉盖尔高斯柱矢量光束  旋涡相位板  微粒控制
英文关键词:Laguerre-Gaussian cylindrical vector beam  vortex phase plate  particles manipulation
基金项目:
作者单位
谭志华 上海理工大学 光电信息与计算机工程学院,上海200093 
翁晓羽 上海理工大学 光电信息与计算机工程学院,上海200093 
隋国荣 上海理工大学 光电信息与计算机工程学院,上海200093 
郭汉明 上海理工大学 光电信息与计算机工程学院,上海200093 
摘要点击次数: 3341
全文下载次数: 3
中文摘要:
      为提高光学显微成像及微粒控制的效率,提出一种通过双环形旋涡相位板对入射光为拉盖尔高斯柱矢量光束进行波前相位调制的多焦点产生方法。通过Debye矢量衍射理论分析了该相位板对焦点区域光强分布的影响。分析表明,经调节内外环旋涡相位拓扑数及内环的半径,可以对焦点区域光强分布进行整形,在焦平面上产生多焦点,而且通过改变入射柱矢量光束的偏振态,可以进一步得到光场由轴向分量为主的多焦点及由横向分量组成的多焦点。通过改变旋涡相位板的拓扑数及光束的参数,可以达到对光斑的数量的控制。这对于捕捉折射率高于周围环境折射率的微粒具有重要的应用价值。
英文摘要:
      To enhance the efficiency of optical imaging and particles manipulation, a novel method is proposed to form the multi-focal spots by focusing Laguerre-Gaussian cylindrical vector beam and the modulation of double ring shape vortex phase plate. Based on the Debye vectorial theory, the influence of this phase plate to the focal light intensity is investigated. By adjusting the radius and topological numbers of the inner and outer ring, the light intensity distribution in the focal region can be reshaped. Multi-focal spots are generated in the focal plane. Moreover, by changing the polarization state of incident cylindrical vector beam, the focal light intensity of the multi-focal spots with major longitudinal component and transverse component are obtained. The number of spots formed in the focal region is determined by the topological numbers of the inner and outer ring. In the field of particle manipulation, several particles can be trapped at a time in multi-focal spots, which could enhance the efficiency of particles trapping and has great practical value in trapping particles with the refractive index larger than that of the surrounding medium.
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