超材料
孤子
背景(考古学)
折射率
物理
色散(光学)
乘法函数
订单(交换)
光学
电信
计算机科学
数学
量子力学
非线性系统
数学分析
财务
经济
古生物学
生物
作者
E. M. E. Zayed,Khaled A. E. Alurrfi,Abeer M M Hasek,Nouria Arar,Ahmed H. Arnous,Yakup Yıldırım
出处
期刊:Physica Scripta
[IOP Publishing]
日期:2024-08-09
卷期号:99 (9): 095220-095220
被引量:2
标识
DOI:10.1088/1402-4896/ad69d7
摘要
Abstract This article represents a significant advancement in the understanding of highly dispersive optical solitons within the context of optical metamaterials, leveraging a generalized form of Kudryashov’s law of refractive index. By integrating eighth-order dispersion and multiplicative white noise into the analysis, crucial elements in the development and optimization of sophisticated optical metamaterials are accounted for in this current paper for the first time. Through an improved direct algebraic method, a diverse range of soliton solutions are derived, encompassing bright, dark, singular, and straddled solitons. Moreover, the study goes beyond mere derivation by presenting exact solutions expressed using Jacobi and Weierstrass’s elliptic functions. This mathematical framework offers deeper insights into the dynamics of solitons within the investigated context. These findings substantially expand the theoretical underpinnings governing optical solitons in metamaterials, with direct implications for the design, and implementation of next-generation optical devices. The bridging of theoretical advancements with practical applications underscores the significance of this work. By elucidating precise control over soliton properties, it lays the groundwork for innovative solutions in optical communications and beyond. Also, this research serves as a crucial stepping stone towards realizing the full potential of optical metamaterials in shaping the future of optical technologies.
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