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Partially coherent polarized atmospheric transmission characteristics and application technology research

机译:部分相干极化大气传输特性及应用技术研究

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Based on partially coherent polarized light transmission characteristics of the atmosphere, an intensity expression of completely coherent flashing light is derived from Andrews scale modulation method. According to the generalized Huygens-Fresnel principle and Rytov theory, the phase fluctuation structure function is obtained on condition that the refractive index profile in the atmosphere meet Von Karman spectrum, then get the arrival Angle fluctuation variance. Through the RMS beam width of gaussian beams in turbulent atmosphere, deviation angle formula of fully coherent gaussian beams in turbulence atmosphere is attained, then get the RMS beam width of partially coherent and derivation angle expression of GSM beam in turbulent atmosphere. Combined with transmission properties of radial polarized laser beam, cross spectral density matrix of partially coherent radially polarized light can be gained by using generalized huygens-fresnel principle. And light intensity and polarization after transmission can be known according to the unity of coherence and polarization theory. On the basis of the analysis model and numerical simulation, the simulation results show that: the light spot caused by atmospheric turbulence of partially coherent polarization will be superior to completely polarized light.Taking advantage of this feature, designed a new wireless suppression technology of atmospheric turbulence, that is the optimization criterion of initial degree of coherent light beam. The optimal initial degree of coherent light beam will change along with the change of atmospheric turbulence conditions,make control the beam's initial degree of coherence to realize the initial degree of coherence of light beam in real time and dynamic control. A spatial phase screen before emission aperture of fully coherent light is to generate the partially coherent light, liquid crystal spatial light modulator is is a preferable way to realize the dynamic random phase. Finally look future of the application research of partially coherent light.
机译:基于大气的部分相干偏振光透射特性,从安德鲁斯比例调制方法推导了完全相干闪光灯的强度表达式。根据广义惠更斯-菲涅耳原理和Rytov理论,在大气折射率分布满足冯·卡曼光谱的条件下,获得了相位起伏结构函数,然后得出了到达角起伏方差。通过湍流大气中高斯光束的均方根光束宽度,得到了湍流大气中全相干高斯光束的偏角公式,得到了部分相干的均方根RMS光束宽度和GSM光束在湍流环境中的导出角表达式。结合径向偏振激光束的透射特性,利用广义惠更斯-菲涅耳原理可以得到部分相干径向偏振光的交叉光谱密度矩阵。根据相干和偏振理论的统一性,可以知道透射后的光强度和偏振。在分析模型和数值模拟的基础上,仿真结果表明:部分相干偏振的大气湍流引起的光斑将优于完全偏振的光,利用这一特性,设计了一种新型的大气无线抑制技术湍流,即相干光束初始程度的优化标准。相干光束的最佳初始相干度会随着大气湍流条件的变化而变化,从而控制光束的初始相干度,从而实现对光束的初相干度的实时和动态控制。在完全相干光的发射孔要产生部分相干光之前的空间相位屏,液晶空间光调制器是实现动态随机相位的优选方式。最后展望部分相干光的应用研究的未来。

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