• Acta Photonica Sinica
  • Vol. 50, Issue 9, 0929001 (2021)
Meiling DUAN1, Jiao DU1, Zhiguo ZHAO2, Xiaodong HUANG1, Yanqin GAO1, and Chaoliang DING2
Author Affiliations
  • 1School of Science, North University of China, Taiyuan03005, China
  • 2Henan Key Laboratory of Electromagnetic Transformation and Detection, Luoyang Normal University, Luoyang, Henan471934, China
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    DOI: 10.3788/gzxb20215009.0929001 Cite this Article
    Meiling DUAN, Jiao DU, Zhiguo ZHAO, Xiaodong HUANG, Yanqin GAO, Chaoliang DING. Dynamic Evolution of the Patically Coherent Circular Edge Dislocation Beams Propagating in Biological Tissues[J]. Acta Photonica Sinica, 2021, 50(9): 0929001 Copy Citation Text show less
    The intensity distribution of the partially coherent circle edge distortion beam with different wavelength in the deep dermis of mouse tissue
    Fig. 1. The intensity distribution of the partially coherent circle edge distortion beam with different wavelength in the deep dermis of mouse tissue
    The intensity distribution of the partially coherent circle edge distortion beams with different distortion number n in the deep dermis of mouse tissue
    Fig. 2. The intensity distribution of the partially coherent circle edge distortion beams with different distortion number n in the deep dermis of mouse tissue
    The phase evolution of the partially coherent circle edge distortion beams with different wavelength in the deep dermis of mouse tissue at the different propagation distance
    Fig. 3. The phase evolution of the partially coherent circle edge distortion beams with different wavelength in the deep dermis of mouse tissue at the different propagation distance
    The phase evolution of the beams with different circle edge distortion number n in the deep dermis of mouse tissue
    Fig. 4. The phase evolution of the beams with different circle edge distortion number n in the deep dermis of mouse tissue
    The propagation trajectory of the partially coherent circle edge distortion beams with different wavelength in the deep dermis of mouse tissue
    Fig. 5. The propagation trajectory of the partially coherent circle edge distortion beams with different wavelength in the deep dermis of mouse tissue
    The propagation trajectory of the partially coherent circle edge distortion beams with different distortion number in the deep dermis of mouse tissue
    Fig. 6. The propagation trajectory of the partially coherent circle edge distortion beams with different distortion number in the deep dermis of mouse tissue
    Meiling DUAN, Jiao DU, Zhiguo ZHAO, Xiaodong HUANG, Yanqin GAO, Chaoliang DING. Dynamic Evolution of the Patically Coherent Circular Edge Dislocation Beams Propagating in Biological Tissues[J]. Acta Photonica Sinica, 2021, 50(9): 0929001
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