Photonics Research, Volume. 5, Issue 4, 267(2017)

Efficient separating orbital angular momentum mode with radial varying phase

Cheng Li1 and Shengmei Zhao2、*
Author Affiliations
  • 1Institute of Signal Processing and Transmission, Nanjing University of Posts and Telecommunications, Nanjing, China
  • 2Key Lab of Broadband Wireless Communication and Sensor Network Technology, Ministry of Education, Nanjing, China
  • show less
    Figures & Tables(6)
    OAM separation method with radial varying phase. U0(r,θ),…,U5(x′,y′) are the electric fields, l1,l2 denote different OAM modes, and m1,m2 represent different radial varying phases. Image e is the superposition beam. Image f is the unfolded beam from image e by the coordinate transformation. FSO: free space optical channel. Images a and c are the horizontal distribution phases that unfolded from the vortex phases, and images b and d are the vertical distribution phases unfolded from the radial varying phases.
    Schematic setup for the experiment. L1–L5, lenses; BS, beam splitter; M1 and M2, mirrors; A1 and A2, apertures.
    Demonstration of the propagation properties of the radial varying phase.
    Simulation and experimental results for the proposed separation method with two OAM modes.
    Simulation and experimental results for the proposed separation method with three OAM modes.
    Comparisons of the separation methods based on coordinate transformation and their corresponding separation efficiency. (a) illustrates the method in Ref. [9]; (b) illustrates the method in Ref. [12]; (c) illustrates the proposed method.
    Tools

    Get Citation

    Copy Citation Text

    Cheng Li, Shengmei Zhao, "Efficient separating orbital angular momentum mode with radial varying phase," Photonics Res. 5, 267 (2017)

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Optical Vortices

    Received: Jan. 9, 2017

    Accepted: Apr. 30, 2017

    Published Online: Oct. 10, 2018

    The Author Email: Shengmei Zhao (zhaosm@njupt.edu.cn)

    DOI:10.1364/PRJ.5.000267

    Topics