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Spectral properties of chirped Gaussian pulsed beams propagating through the turbulent atmosphere

机译:chi高斯脉冲光束在湍流中传播的光谱特性

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摘要

The spectral properties of chirped Gaussian pulsed beams propagating through the turbulent atmosphere are studied. The analytical expression for the spectrum, algebraic equation governing the position omega(max) of the maximum spectrum and algebraic equation governing the position r(0) without spectral shift are derived. It is shown that the spectrum at the observation point (r, z) depends on the structure constant of the refractive index C-n(2), chirp parameter C and pulse duration T. The normalized on-axis spectrum S(omega) is blue-shifted, and the off-axis spectrum becomes red-shifted with increasing radial coordinate. The effect of turbulence on the spectral shift of chirped Gaussian pulsed beams becomes smaller with decreasing C and increasing T. The position ro without spectral shift is dependent on omega(0), C-n(2), and z, but independent of T and C. In addition, there exists an off-axis spectral transition of a chirped Gaussian pulsed beam in the turbulent atmosphere. The physical explanations of the spectral shift and spectral transition of chirped Gaussian pulsed beams propagating through the turbulent atmosphere are given.
机译:研究了Ga高斯脉冲光束在湍流大气中传播的光谱特性。得出频谱的解析表达式,控制最大频谱的位置ω(max)的代数方程式和控制不发生频谱偏移的位置r(0)的代数方程式。结果表明,观测点(r,z)处的光谱取决于折射率Cn(2)的结构常数,线性调频参数C和脉冲持续时间T。归一化的轴上光谱S(ω)为蓝色-位移,并且离轴光谱随径向坐标的增加而红移。湍流对chi高斯脉冲束光谱偏移的影响随着C的减小和T的增加而变小。无光谱偏移的位置ro取决于omega(0),Cn(2)和z,但与T和C无关另外,在湍流大气中存在a线性高斯脉冲束的离轴光谱跃迁。给出了在湍流大气中传播的chi高斯脉冲光束的光谱位移和光谱跃迁的物理解释。

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