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The simulation of laser diffraction effect in optoelectric imaging systems

机译:光电成像系统中激光衍射效应的仿真

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Owing to the limitation of optoelectric imaging systems' pupil, it is inevitable to generate the diffraction effect in laser propagation; however, the laser energy distribution causing by the diffraction effect can directly affect the jamming effect to optoelectric imaging systems. First of all, we began with the basal Huygens-Fresnel principle and Fresnel-Kirchhoff diffraction formula in this paper, and deduced the laser energy distribution formula on the optoelectric imaging systems' detector causing by the rectangular pupil, circular pupil and annulus pupil. Secondly, we simulated the laser energy distribution causing by the diffraction effect under the different pupil shapes, laser launch parameters, optical system's parameters and optoelectric detector's parameters, and investigated the laser energy distribution rule under the different conditions. The simulation results indicated that the range of intensity distribution increased with laser wavelength, laser incident energy, focal length and the size of pupil that also can affect the pattern of intensity distribution. The research fruits can provide the theoretical basis and technical support for evaluating laser jamming effect to optoelectric imaging systems.
机译:由于光电成像系统光瞳的限制,在激光传播中不可避免地会产生衍射效应。然而,由衍射效应引起的激光能量分布会直接影响对光电成像系统的干扰效应。首先,我们从基本的惠更斯-菲涅耳原理和菲涅耳-基尔霍夫衍射公式开始,推导了由矩形光瞳,圆形光瞳和环形光瞳引起的光电成像系统探测器上的激光能量分布公式。其次,模拟了在不同光瞳形状,激光发射参数,光学系统参数和光电探测器参数下,由衍射效应引起的激光能量分布,并研究了不同条件下的激光能量分布规律。仿真结果表明,强度分布的范围随着激光波长,激光入射能量,焦距和瞳孔尺寸的增加而增加,这也会影响强度分布的模式。研究成果可为评价激光对光电成像系统的干扰效应提供理论依据和技术支持。

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