• Laser & Optoelectronics Progress
  • Vol. 55, Issue 3, 031401 (2018)
Zhengguo Lin, Xing Jin*, Hao Chang, and Zhiwei Zhang
Author Affiliations
  • State Key Laboratory of Laser Propulsion and Application, Aerospace Engineering University, Beijing 101416, China
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    DOI: 10.3788/LOP55.031401 Cite this Article Set citation alerts
    Zhengguo Lin, Xing Jin, Hao Chang, Zhiwei Zhang. Analysis of Impulse Coupling Characteristics of Non-Planar Space Debris by Laser Irradiation[J]. Laser & Optoelectronics Progress, 2018, 55(3): 031401 Copy Citation Text show less
    Irregular space debris irradiated by great laser spot
    Fig. 1. Irregular space debris irradiated by great laser spot
    Coordinate system of sphere irradiated by great laser spot
    Fig. 2. Coordinate system of sphere irradiated by great laser spot
    Variation in k with r/R
    Fig. 3. Variation in k with r/R
    Relationship between impulse coupling coefficient and laser power density
    Fig. 4. Relationship between impulse coupling coefficient and laser power density
    Variations in (a) ε and (b) η with r/R
    Fig. 5. Variations in (a) ε and (b) η with r/R
    Diagram of cube irradiated by great laser spot in horizontal plane
    Fig. 6. Diagram of cube irradiated by great laser spot in horizontal plane
    Projected light spot on the surfaces of planes with normal vectors of nx and ny
    Fig. 7. Projected light spot on the surfaces of planes with normal vectors of nx and ny
    Variations in (a) impulse direction and (b) impulse value with angle of incident laser
    Fig. 8. Variations in (a) impulse direction and (b) impulse value with angle of incident laser
    Variations in (a) impulse direction and (b) impulse value with angle of incident laser under different spot diameters
    Fig. 9. Variations in (a) impulse direction and (b) impulse value with angle of incident laser under different spot diameters
    Zhengguo Lin, Xing Jin, Hao Chang, Zhiwei Zhang. Analysis of Impulse Coupling Characteristics of Non-Planar Space Debris by Laser Irradiation[J]. Laser & Optoelectronics Progress, 2018, 55(3): 031401
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