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Numerical calculation of nonlinear ultrashort laser pulse propagation in transparent Kerr media

机译:非线性超短激光脉冲在透明Kerr介质中传播的数值计算

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In the focal region of tightly focused ultrashort laser pulses, sufficient high intensities to initialize nonlinear ionization processes are easily achieved. Due to these nonlinear ionization processes, mainly multiphoton ioniza-tion and cascade ionization, free electrons are generated in the focus resulting in optical breakdown. A model including both nonlinear pulse propagation and plasma generation is used to calculate numerically the interaction of ultrashort pulses with their self-induced plasma in the vicinity of the focus. The model is based on a (3+1)-dimensional nonlinear Schroedinger equation describing the pulse propagation coupled to a system of rate equations covering the generation of free electrons. It is applicable to any transparent Kerr medium, whose linear and nonlinear optical parameters are known. Numerical calculations based on this model are used to understand nonlinear side effects, such as streak formation, occurring in addition to optical breakdown during short pulse refractive eye surgeries like fs-LASIK. Since the optical parameters of water are a good first-order approximation to those of corneal tissue, water is used as model substance. The free electron density distribution induced by focused ultrashort pulses as well as the pulses spatio-temporal behavior are studied in the low-power regime around the critical power for self-focusing.
机译:在紧密聚焦的超短激光脉冲的聚焦区域中,可以轻松获得足够高的强度来初始化非线性电离过程。由于这些非线性电离过程(主要是多光子电离和级联电离),在焦点处产生自由电子,导致光击穿。使用包括非线性脉冲传播和等离子体产生的模型来数值计算超短脉冲与其焦点附近自感应等离子体的相互作用。该模型基于(3 + 1)维非线性Schroedinger方程,该方程描述了与传播自由电子的速率方程组耦合的脉冲传播。它适用于已知线性和非线性光学参数的任何透明Kerr介质。基于该模型的数值计算可用于理解非线性副作用,例如条纹形成,以及在短脉冲屈光眼科手术(例如fs-LASIK)中发生的光学击穿之外还会发生的条纹。由于水的光学参数与角膜组织的光学参数很好地近似,因此将水用作模型物质。在低功率范围内,围绕自聚焦的临界功率,研究了聚焦超短脉冲引起的自由电子密度分布以及脉冲的时空行为。

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