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首页> 外文期刊>Studies in Applied Mathematics >2-D solitary waves in thermal media with nonsymmetric boundary conditions
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2-D solitary waves in thermal media with nonsymmetric boundary conditions

机译:具有非对称边界条件的热介质中的2-D孤立波

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Optical solitary waves and their stability in focusing thermal optical media, such as lead glasses, are studied numerically and theoretically in (2 + 1) dimensions. The optical medium is a square cell and mixed boundary conditions of Newton cooling and fixed temperature on different sides of the cell are used. Nonlinear thermal optical media have a refractive index which depends on temperature, so that heating from the optical beam and heat flow across the boundaries can change the refractive index of the medium. Solitary wave solutions are found numerically using the Newton conjugate-gradient method, while their stability is studied using a linearized stability analysis and also via numerical simulations. It is found that the position of the solitary wave is dependent on the boundary conditions, with the center of the beam moving toward the warmer boundaries, as the parameters are varied. The stability of the solitary waves depends on the symmetry of the boundary conditions and the amplitude of the solitary waves.
机译:在数值和理论上在(2 + 1)尺寸上,研究了光学孤波及其在聚焦热光学介质(例如铅眼镜)中的稳定性。光学介质是使用牛顿冷却和电池的不同侧的牛顿冷却和固定温度的混合边界条件。非线性热光学介质具有取决于温度的折射率,从而从光束和穿过边界的热流的加热可以改变介质的折射率。使用牛顿共轭梯度法在数值上发现孤立波溶液,而使用线性化稳定性分析以及通过数值模拟研究其稳定性。发现孤立波的位置取决于边界条件,随着参数的变化,光束的中心朝向较高的边界移动。孤立波的稳定性取决于边界条件的对称性和孤立波的幅度。

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