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首页> 外文期刊>Results in Physics >The propagation of spiraling elliptic sine soliton in nonlocal nonlinear media
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The propagation of spiraling elliptic sine soliton in nonlocal nonlinear media

机译:螺旋椭圆正弦孤子在非局域非线性介质中的传播

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We study a novel spiraling elliptic sine soliton (SESS) in nonlocal nonlinear media by split-step Fourier method, and find that the profile and phase of such soliton have complicated structures. Numerical results show that the topological charge and ellipticity have profound effects on the propagation dynamics of SESS. Concretely, for the same ellipticity, the different topological-charge SESS have the same critical power, cross-term phase coefficient, rotation period, and different critical orbital angular momentums (OAM). However, the critical power, cross-term phase coefficient, rotation period and OAM will increase as the increase of ellipticity. In addition, as the ellipticity and topological charge increase, the stability of the beam will decrease.
机译:我们通过分步傅里叶方法研究了一种在非局部非线性介质中的新型螺旋椭圆正弦孤子(SESS),发现这种孤子的轮廓和相位具有复杂的结构。数值结果表明,拓扑电荷和椭圆率对SESS的传播动力学具有深远的影响。具体而言,对于相同的椭圆率,不同的拓扑电荷SESS具有相同的临界功率,交叉项相位系数,旋转周期和不同的临界轨道角动量(OAM)。但是,临界功率,交叉项相位系数,旋转周期和OAM将随着椭圆率的增加而增加。另外,随着椭圆率和拓扑电荷的增加,光束的稳定性将降低。

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