Exploring chaotic behavior of optical solitons in complex structured Conformable Perturbed Radhakrishnan-Kundu-Lakshmanan Model

Rashid Ali, Mohammad Mahtab Alam, Shoaib Barak
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Abstract

In this research, we aim to construct and examine optical soliton solutions for the complex structured Conformable Perturbed Radhakrishnan-Kundu-Lakshmanan Model (CPRKLM) using the Generalized-Kudryashov-Auxiliry Jacobian Method (GKAJM). The current study is notable for its thorough examination and for shedding insight on the chaotic behavior of families of localized optical soliton. Through the creation of 3D and contour visualizations that effectively capture the chaotic behaviors shown by these solitons, we are able to demonstrate that the optical solitons exhibit two distinct forms of perturbations: axial and periodic. Our research stimulates improvements in data processing tools and optical equipment, with consequences for communication networks and nonlinear fiber optics. Through a deeper understanding of optical solitons and their applications, this work also makes a substantial contribution to the discipline of nonlinear optics.
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探索复杂结构可变形扰动拉达克里希南-昆杜-拉克希曼南模型中光孤子的混沌行为
在这项研究中,我们旨在利用广义库德里亚绍夫-阿克西里雅各布方法(GKAJM),构建和检验复杂结构可变形扰动拉达克里希南-昆杜-拉克希曼模型(CPRKLM)的光学孤子解。当前研究的显著特点是对局部光孤子家族的混沌行为进行了深入研究和揭示。通过创建能有效捕捉这些孤子所表现出的混沌行为的三维和轮廓可视化,我们能够证明光学孤子表现出两种不同形式的扰动:轴向扰动和周期扰动。我们的研究促进了数据处理工具和光学设备的改进,并对通信网络和非线性光纤产生了影响。通过加深对光孤子及其应用的理解,这项工作还为非线性光学学科做出了重大贡献。
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