• Laser & Optoelectronics Progress
  • Vol. 59, Issue 19, 1914001 (2022)
Qianqian Su* and Mengrao Tang
Author Affiliations
  • School of Electronics and Electrical Engineering, Xiamen Institute of Technology, Xiamen 361021, Fujian, China
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    DOI: 10.3788/LOP202259.1914001 Cite this Article Set citation alerts
    Qianqian Su, Mengrao Tang. Intensity Distribution Characteristics of Flat-Top Beam After Amplitude Modulation in Target Cavity[J]. Laser & Optoelectronics Progress, 2022, 59(19): 1914001 Copy Citation Text show less
    Schematic diagram of the ICF target cavity
    Fig. 1. Schematic diagram of the ICF target cavity
    Influence of modulation amplitude and defect size on the intensity distribution in the target cavity section. (a) r0=1.0 mm, A=1.0, z0=0.005 mm; (b) r0=0.5 mm, A=0.5, z0=0.005 mm; (c) r0=1.0 mm, A=1.0, z0=0.250 mm; (d) r0=0.5 mm, A=0.5, z0=0.150 mm
    Fig. 2. Influence of modulation amplitude and defect size on the intensity distribution in the target cavity section. (a) r0=1.0 mm, A=1.0, z0=0.005 mm; (b) r0=0.5 mm, A=0.5, z0=0.005 mm; (c) r0=1.0 mm, A=1.0, z0=0.250 mm; (d) r0=0.5 mm, A=0.5, z0=0.150 mm
    Influence of modulation amplitude and defect size on the intensity distribution of the cavity wall. (a) r0=3.0 mm, A=1.0; (b) r0=1.0 mm, A=1.0; (c) r0=3.0 mm, A=0.3; (d) two defects; (e) intensity distribution of x-axis
    Fig. 3. Influence of modulation amplitude and defect size on the intensity distribution of the cavity wall. (a) r0=3.0 mm, A=1.0; (b) r0=1.0 mm, A=1.0; (c) r0=3.0 mm, A=0.3; (d) two defects; (e) intensity distribution of x-axis
    Influence of different incident angles on the intensity distribution of the cavity wall. (a) θ=10°; (b) θ=20°; (c) θ=30°; (d) θ=40°; (e) intensity distribution of x-axis
    Fig. 4. Influence of different incident angles on the intensity distribution of the cavity wall. (a) θ=10°; (b) θ=20°; (c) θ=30°; (d) θ=40°; (e) intensity distribution of x-axis
    Qianqian Su, Mengrao Tang. Intensity Distribution Characteristics of Flat-Top Beam After Amplitude Modulation in Target Cavity[J]. Laser & Optoelectronics Progress, 2022, 59(19): 1914001
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