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Dark Photovoltaic Spatial Solitons: Experiment and Numerical Solution

机译:深色光伏空间孤子:实验和数值解

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We generated dark photovoltaic spatial solitons in the iron doped lithium niobate, and we studied the generation process with a numerical model. The Schrodinger nonlinear equation was simulated with BPM (beam propagation method). This numerical method is also called symmetrical split-step Fourier method. For the generation of dark solitons, we used both the amplitude mask and the phase mask. The amplitude mask generated the even number of solitons, and the phase mask created the odd number of solitons. Every result from our experiment can be verified with BPM. The numerical program was programmed in Matlab. We created dark photovoltaic solitons in a bulk crystal with the optical intensity 1 - 10 mW/cm~2, and the soliton's FWHM about 5-18 μm. We observed the temporal evolution of the one-dimensional dark photovoltaic solitons under open-circuit condition and the self-defocusing effect of the laser beam. The steady-state measurement (stable soliton) was obtained after a 6-15 min exposure. For the generation the argon ion laser beam at the wavelength of 514nm was used. It was polarized along the optical axis and collimated to a diameter of about 2mm on the input face. The resulting index perturbation forms a planar waveguide.
机译:我们在掺铁的铌酸锂中生成了深色光伏空间孤子,并使用数值模型研究了生成过程。 Schrodinger非线性方程是用BPM(束传播方法)模拟的。该数值方法也称为对称分步傅里叶方法。为了生成暗孤子,我们同时使用了幅度模板和相位模板。幅度模板生成偶数个孤子,而相位模板生成奇数个孤子。我们实验的每个结果都可以用BPM进行验证。数值程序是在Matlab中编程的。我们在块状晶体中创建了深色光伏孤子,其光强度为1-10 mW / cm〜2,孤子的FWHM约为5-18μm。我们观察到在开路条件下一维暗光光伏孤子的时间演化以及激光束的自散焦效应。暴露6-15分钟后获得稳态测量值(稳定孤子)。为了产生,使用了波长为514nm的氩离子激光束。它沿光轴偏振,并在输入面上准直至直径约2mm。所得的折射率扰动形成平面波导。

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