数学物理学报 ›› 2026, Vol. 46 ›› Issue (1): 238-248.

• 研究论文 • 上一篇    下一篇

Hirota 方程的光孤子共振和孤子分子

曾平平1, 曾平安2, 刘露3,*()   

  1. 1浙江金融职业学院信息技术学院 杭州 310000
    2浙江工业大学之江学院理学院 浙江绍兴 312000
    3山东科技大学经济管理学院 山东青岛 266590
  • 收稿日期:2025-02-13 修回日期:2025-06-27 出版日期:2026-02-26 发布日期:2026-01-19
  • 通讯作者: 刘露 E-mail:magic_liu@sdust.edu.cn
  • 基金资助:
    国家自然科学基金(72272089);国家自然科学基金(71902105);泰山学者工程专项经费(202312191)

Optical Soliton Resonances and Soliton Molecules for the Hiorta Equation

Pingping Zeng1, Pingan Zeng2, Lu Liu3,*()   

  1. 1Institute of Information Technology, Zhejiang Financial College, Hangzhou 310000
    2School of Science, Zhijiang College of Zhejiang University of Technology, Zhejiang Shaoxing 312000
    3School of Economics and Management, Shandong University of Science and Technology, Shandong Qingdao 266590
  • Received:2025-02-13 Revised:2025-06-27 Online:2026-02-26 Published:2026-01-19
  • Contact: Lu Liu E-mail:magic_liu@sdust.edu.cn
  • Supported by:
    NSFC(72272089);NSFC(71902105);Special Funds for the Taishan Scholars Program(202312191)

摘要:

孤子共振和孤子分子对光学、物理和流体力学等领域的研究具有重要意义. 该文在非线性光学系统的背景下, 对 Hirota 方程的光孤子共振和孤子分子特性进行了系统性研究. 首先, 基于 Lax 对构造出 Hirota 方程的 $N$ 重 Darboux 变换. 并由此推导出 $N$ 孤子解的精确解析表达式. 接下来, 通过改变谱参数和初始相位参数, 构造出 Hirota 方程的新型孤子共振和孤子分子解, 并分析其动力学特性. 研究结果表明, 局域孤子共振可演化为孤子分子, 孤子分子可视为局域孤子共振的极限形式. 此外, 研究揭示了孤子携带的能量在孤子共振与孤子分子形成过程中呈现增长趋势, 并表明孤子分子的时空演化模式随孤子阶数的提升而趋于复杂. 同时, 孤子分子的波密度与高阶色散项及高阶非线性项的系数呈正相关关系. 上述结果为 Hirota 方程孤子动力学的深入研究提供了新的理论依据, 并有助于理解非线性光学系统中的孤子相互作用机制.

关键词: Hirota 方程, Darboux 变换, 孤子共振, 孤子分子

Abstract:

Soliton resonance and soliton molecules play a significant role in the study of optics, physics, and fluid mechanics. This paper systematically investigates the soliton resonance and soliton molecule properties of the Hirota equation in the context of nonlinear optical systems. First, based on the Lax pair, the $N$-fold Darboux transformation of the Hirota equation is constructed, from which the exact analytical expressions of the $N$-soliton solutions are derived. Subsequently, by adjusting the spectral parameters and initial phase parameters, novel soliton resonance and soliton molecule solutions of the Hirota equation are constructed, and their dynamical characteristics are analyzed. The research results indicate that localized soliton resonance can evolve into soliton molecules, with soliton molecules being the limiting form of localized soliton resonance. Furthermore, the study reveals that the energy carried by solitons exhibits a growth trend during the formation of soliton resonance and soliton molecules. It also demonstrates that the spatiotemporal evolution patterns of soliton molecules become increasingly complex as the soliton order increases. Meanwhile, the wave density of soliton molecules is positively correlated with the coefficients of higher-order dispersion and higher-order nonlinear terms. These findings provide new theoretical insights into the soliton dynamics of the Hirota equation and contribute to a better understanding of soliton interaction mechanisms in nonlinear optical systems.

Key words: Hirota equation, Darboux transformation, soliton resonances, soliton molecules

中图分类号: 

  • O175.29