Breathers, Lump, M-shapes and Other Optical Soliton Interactions for the GRIN Multimode Optical Fiber

IF 1.3 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY International Journal of Theoretical Physics Pub Date : 2024-09-27 DOI:10.1007/s10773-024-05763-z
Muhammad Zafarullah Baber, Sandeep Malik, Muhammad Waqas Yasin, Nauman Ahmed, Hadi Rezazadeh, Syed Mansoor Ali, Mubasher Ali, Mohammad Ali Hosseinzadeh
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Abstract

The different types of optical soliton solutions are investigated for the 2-dimensional nonlinear Schrödinger equation with an instantaneous Kerr nonlinearity. This equation contains the beam propagation in a multimode optical fiber with a parabolic index profile. Different soliton solutions are examined, such as Breather waves, Lump waves, Mixed types, Periodic cross kink, Multiwave, M-shape, M-shape rational one, two kinks, and rogue waves. To obtain these optical solitons, we apply the Hirota bilinear transformation approach. These results are spectral, temporal, and spatial features of ultrashort light pulses that can be controlled in novel ways by this kind of nonlinear multimode optical fiber, which is gaining popularity. Moreover, the 3-dimensional, 2-dimensional, and contour plots are drawn for some solutions that show their physical interactions by selecting different parameters. These results are very helpful for further study of dynamical systems.

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GRIN 多模光纤的呼吸器、结节、M 形和其他光孤子相互作用
针对具有瞬时克尔非线性的二维非线性薛定谔方程,研究了不同类型的光孤子解。该方程包含光束在具有抛物线折射率曲线的多模光纤中的传播。研究了不同的孤子解决方案,如呼吸波、块状波、混合类型、周期性交叉扭结、多波、M 形、M 形合理一、二扭结和流氓波。为了获得这些光孤子,我们采用了 Hirota 双线性变换方法。这些结果是超短光脉冲的光谱、时间和空间特征,可以通过这种日益流行的非线性多模光纤以新颖的方式加以控制。此外,还绘制了一些解决方案的三维、二维和等值线图,通过选择不同的参数来显示它们之间的物理相互作用。这些结果对进一步研究动力系统很有帮助。
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来源期刊
CiteScore
2.50
自引率
21.40%
发文量
258
审稿时长
3.3 months
期刊介绍: International Journal of Theoretical Physics publishes original research and reviews in theoretical physics and neighboring fields. Dedicated to the unification of the latest physics research, this journal seeks to map the direction of future research by original work in traditional physics like general relativity, quantum theory with relativistic quantum field theory,as used in particle physics, and by fresh inquiry into quantum measurement theory, and other similarly fundamental areas, e.g. quantum geometry and quantum logic, etc.
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