• Chinese Optics Letters
  • Vol. 21, Issue 8, 080003 (2023)
Liangliang Gu1、2, Qian Cao1、2、*, and Qiwen Zhan1、2
Author Affiliations
  • 1School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China
  • 2Zhangjiang Laboratory, Shanghai 201204, China
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    DOI: 10.3788/COL202321.080003 Cite this Article Set citation alerts
    Liangliang Gu, Qian Cao, Qiwen Zhan. Spatiotemporal optical vortex wavepackets with phase singularities embedded in multiple domains [Invited][J]. Chinese Optics Letters, 2023, 21(8): 080003 Copy Citation Text show less
    OAM of STOV wavepacket with phase singularities embedded in the x–z and y–z domains with vary scaling factors. (a) OAM projection in the y direction and x direction when wy or wx is fixed; (b) magnitude of OAM with changing wx and wy. The dashed lines correspond to results shown in (a1) and (a2). (c) Orientation of OAM in the x–y plane with varying wx and wy.
    Fig. 1. OAM of STOV wavepacket with phase singularities embedded in the x–z and y–z domains with vary scaling factors. (a) OAM projection in the y direction and x direction when wy or wx is fixed; (b) magnitude of OAM with changing wx and wy. The dashed lines correspond to results shown in (a1) and (a2). (c) Orientation of OAM in the x–y plane with varying wx and wy.
    OAM of STOV wavepacket with phase singularities embedded in the x–z and x′–z domains. The x′ axis lies in the x–y plane with an offset angle of θx−x′ with respect to the x axis. (a) Projection of OAM in the x direction and y direction when θx−x′ changes; (b) magnitude of OAM using both the analytical model and the vector model; (c) vectorial representation of the transverse OAM in the x–y plane using two different models.
    Fig. 2. OAM of STOV wavepacket with phase singularities embedded in the x–z and x′–z domains. The x′ axis lies in the x–y plane with an offset angle of θx−x with respect to the x axis. (a) Projection of OAM in the x direction and y direction when θx−x changes; (b) magnitude of OAM using both the analytical model and the vector model; (c) vectorial representation of the transverse OAM in the x–y plane using two different models.
    Spatiotemporal intensity and phase profile of STOV wavepackets with phase singularities embedded in the x–t and x′–t domains; the angle difference between the x and x′ axes changes from 0 to π in an interval of π/4 (from left to right). (a) Intensity isosurface plot at 15% and 50% of the intensity maximum; (b) phase distribution on the 15% intensity isosurface plot; (c) intensity isosurface plot (15%) in the x–y plane.
    Fig. 3. Spatiotemporal intensity and phase profile of STOV wavepackets with phase singularities embedded in the x–t and x′–t domains; the angle difference between the x and x′ axes changes from 0 to π in an interval of π/4 (from left to right). (a) Intensity isosurface plot at 15% and 50% of the intensity maximum; (b) phase distribution on the 15% intensity isosurface plot; (c) intensity isosurface plot (15%) in the x–y plane.
    Spatiotemporal intensity and phase profile of STOV wavepackets with phase singularities embedded in the x–z, x′–z, and x–y planes; θx−x′ changes from 0 to π in an interval of π/4 (from left to right). (a) Intensity isosurface plot at 5% and 30% of the peak intensity; (b) phase profile on the top of 5% intensity isosurface.
    Fig. 4. Spatiotemporal intensity and phase profile of STOV wavepackets with phase singularities embedded in the x–z, x′–z, and x–y planes; θx−x changes from 0 to π in an interval of π/4 (from left to right). (a) Intensity isosurface plot at 5% and 30% of the peak intensity; (b) phase profile on the top of 5% intensity isosurface.
    Liangliang Gu, Qian Cao, Qiwen Zhan. Spatiotemporal optical vortex wavepackets with phase singularities embedded in multiple domains [Invited][J]. Chinese Optics Letters, 2023, 21(8): 080003
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