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The influences of turbid media on the optical property of different ultra short Gauss pulse

机译:混浊介质对不同超短高斯脉冲光学特性的影响

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Based on the diffusion approximation theory, when the laser pulse transmitting through the turbid media, its energy will be attenuated and the pulse shape will be changed by the scattering and absorption. In this paper, Mathematics equations of the ultra short Gauss laser pulse in different pulse width t_p are given, the reflective pulses with the boundary condition of semi-infinite homogeneous media are discussed. We get the simulation results of reflective intensity and the reflective pulse shape of different t_p based on the diffusion equation. From the results, we know that the ultra short Gauss laser pulse will be widened by the diffusive scattering. Besides, we find that the various medium parameters will influence the reflection of the Gauss laser pulse very differently. With the boundary condition of semi-infinite homogeneous media, the influence of the absorption, the scattering, and the anisotropy coefficient will be also changed by the different t_p of ultra short Gauss laser pulse. All the conditions mentioned above have been investigated in the present paper. This study will be very useful for the measurement of optical properties of tissue.
机译:基于扩散近似理论,当激光脉冲通过混浊介质传输时,其能量将被衰减,脉冲形状将因散射和吸收而改变。给出了不同脉冲宽度t_p下的超短高斯激光脉冲的数学方程,讨论了具有半无限均匀介质边界条件的反射脉冲。基于扩散方程,我们得到了不同t_p反射强度和反射脉冲形状的仿真结果。从结果可以知道,超短高斯激光脉冲会由于扩散散射而变宽。此外,我们发现各种介质参数将对高斯激光脉冲的反射产生不同的影响。在半无限均匀介质的边界条件下,超短高斯激光脉冲的不同t_p也会改变吸收,散射和各向异性系数的影响。本文已经研究了上述所有条件。这项研究对于组织光学特性的测量将非常有用。

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