曹青华, 彭仁军, 吴键, 邓蓉. 激光在湍流大气中的干涉仿真[J]. 应用光学, 2006, 27(4): 312-314.
引用本文: 曹青华, 彭仁军, 吴键, 邓蓉. 激光在湍流大气中的干涉仿真[J]. 应用光学, 2006, 27(4): 312-314.
CAO Qing-hua, PENG Ren-jun, WU Jian, DENG Rong. Interference simulation of laser beam propagation in turbulent atmosphere[J]. Journal of Applied Optics, 2006, 27(4): 312-314.
Citation: CAO Qing-hua, PENG Ren-jun, WU Jian, DENG Rong. Interference simulation of laser beam propagation in turbulent atmosphere[J]. Journal of Applied Optics, 2006, 27(4): 312-314.

激光在湍流大气中的干涉仿真

Interference simulation of laser beam propagation in turbulent atmosphere

  • 摘要: 通过研究激光在湍流大气中的传输情况,旨在为光学高分辨率干涉成像提供理论依据。采用相位屏的近似处理方法对激光通过大气湍流传输进行模拟,研究激光通过湍流大气的干涉情况。试验结果表明:孔径间距越大,干涉条纹越密;在传输距离为2km,大气湍流折射率结构常数C2n为10-14,即接近强湍流的情况下,可以形成比较好的干涉条纹。孔径间距较小时,干涉的明暗条纹清晰可见。在实际干涉成像中,可以选择适当的孔径间距来获得较好的干涉条纹,从而获得目标的高分辨率像。

     

    Abstract: In order to provide a theoretical base for high resolution optical coherent imaging, the interference of laser beam transmitting in the turbulent atmosphere for a certain distance is studied. The approximation method of phase screen was used to simulate laser beam transmission in turbulent atmosphere, and its interference in turbulent atmosphere was investigated. The simulation indicates that the longer the distance between apertures is, the closer the interference fringes are; good interference fringes are formed when transmission distance is two kilometers and atmospheric turbulence refractive index structure coefficient C2nis 10-14, which is close to strong turbulence. The interference fringes are clear if the apertures are closer. Therefore, proper distance between the transmit apertures could be selected to get better interference fringes and high resolution images.

     

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