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Model propagation of a femtosecond laser radiation in the vitreous of the human eye

机译:飞秒激光辐射在人眼玻璃体中的模型传播

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The paper presents a mathematical model of linear and nonlinear processes occurring due to propagation of femtosecond laser pulses in vitreous of the human eye. By methods of numerical simulation, we have solved a nonlinear spectral equation describing dynamics of two-dimensional TE-polarized radiation. The solution was performed in a homogeneous isotropic medium with instantaneous cubic nonlinearity without using slowly varying envelope approximation. For simulation we used medium with parameters close to the optical media of the eye. The model of femtosecond radiation takes into account the dynamics of the process of dispersion pulse broadening in time and occurrence of self-focusing of the retina when passing through vitreous body of the eye. The dependence between pulse duration on the retina and duration of the input pulse was found, as well as the values of power density at which self-focusing occurs. It was shown that the main mechanism of radiation damage caused while using Ti-sapphire laser is photoionization. The results coincide with the results obtained by other scientists. They can be used to create Russian laser safety standards for femtosecond laser systems.
机译:本文提出了由于人眼玻璃体中飞秒激光脉冲传播而发生的线性和非线性过程的数学模型。通过数值模拟方法,我们已经解决了描述二维TE偏振辐射动态的非线性频谱方程。溶液在均匀的各向同性培养基中,瞬时立方非线性在不使用缓慢变化的包络近似的情况下进行。对于模拟,我们使用介质接近眼睛光学介质的参数。飞秒辐射模型考虑了在通过眼睛玻璃体的玻璃体玻璃体的时间和视网膜的自聚焦的发生过程中的动态。找到脉冲持续时间与输入脉冲的持续时间之间的依赖性,以及发生自对焦的功率密度值。结果表明,在使用Ti-Sapphire激光器时造成的辐射损伤的主要机制是摄影。结果与其他科学家获得的结果一致。它们可用于为飞秒激光系统创建俄罗斯激光安全标准。

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