4.6 Article

Painleve analysis and higher-order rogue waves of a generalized (3+1)-dimensional shallow water wave equation

期刊

PHYSICA SCRIPTA
卷 97, 期 5, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1402-4896/ac5f90

关键词

Higher-dimensional nonlinear system; (3+1)-D Hirota-Satsuma-Ito equation; Painleve analysis; Hirota bilinear method; Higher-order rogue waves

资金

  1. National Institute of Technology Tiruchirappalli
  2. Ministry of Education (MoE), Govt. of India
  3. Korean Ministry of Education Science and Technology through Young Scientist Training (YST) Program of the Asia-Pacific Center for Theoretical Physics (APCTP), Pohang-si, Gyeongsangbuk-do
  4. Department of Science and Technology-Science and Engineering Research Board (DST-SERB), Govt. of India [PDF/2016/000547]

向作者/读者索取更多资源

In this paper, we investigate a generalized (3+1)-dimensional Hirota-Satsuma-Ito equation describing the unidirectional propagation of shallow-water waves and perform Painleve analysis to understand its integrability nature. We construct higher-order rogue wave solutions using Hirota's bilinearization and generalized polynomial functions, and explore their dynamics in detail, demonstrating potential advantages with available arbitrary constants in their manipulation mechanism.
Considering the importance of ever-increasing interest in exploring localized waves, we investigate a generalized (3+1)-dimensional Hirota-Satsuma-Ito equation describing the unidirectional propagation of shallow-water waves and perform Painleve analysis to understand its integrability nature. We construct the explicit form of higher-order rogue wave solutions by adopting Hirota's bilinearization and generalized polynomial functions. Further, we explore their dynamics in detail, depicting different pattern formation that reveal potential advantages with available arbitrary constants in their manipulation mechanism. Particularly, we demonstrate the existence of singly-localized line-rogue waves and doubly-localized rogue waves with multiple (single, triple, and sextuple) structures generating triangular and pentagon type geometrical patterns with controllable orientations that can be altered appropriately by tuning the parameters. The presented analysis will be an essential inclusion in the context of rogue waves in higher-dimensional systems.

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