探索mKdV方程对称性的深度:物理解释和多波解

IF 2.3 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Xiazhi Hao , S.Y. Lou
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引用次数: 0

摘要

本文开始深入探索修改的Korteweg-de Vries (mKdV)方程,特别强调揭示其无限对称的复杂结构及其物理解释。这项研究的核心是k对称性和τ对称性,它们由递归关系描绘,构成了支撑守恒定律的无限系综。我们研究了一个现有的对称猜想,该猜想认为,目前确定的对称代表了一个更广泛的子集,但尚未被发掘。通过对与mKdV方程相关的孤子解的分析证实了这一猜想,证明了这些对称性可以分解为中心和波数平移对称性的线性组合。此外,通过施加无限对称约束序列,推导精确的多波解变得可行。该方法基于所提出的对称猜想,有助于提取精确解,包括配色、呼吸、多孤子解等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the depths of symmetries in the mKdV equation: Physical interpretations and multi-wave solutions
This manuscript embarks on an in-depth exploration of the modified Korteweg-de Vries (mKdV) equation, with a particular emphasis on unraveling the intricate structure of its infinite symmetries and their physical interpretations. Central to this investigation are the K-symmetries and τ-symmetries, which are delineated by a recursive relationship and constitute an infinite ensemble that underpins the conservation laws. We engage with an existing symmetry conjecture, which posits that the currently identified symmetries represent a subset of a more expansive, yet to be unearthed, set. This conjecture is substantiated through an analysis of the soliton solutions associated with the mKdV equation, demonstrating that these symmetries can be decomposed into linear combinations of center and wave number translational symmetries. Further, by imposing an infinite sequence of symmetry constraints, it becomes feasible to derive exact multi-wave solutions. This methodology, predicated on the proposed symmetry conjecture, facilitates the extraction of exact solutions, encompassing complexiton, breather, multi-soliton solutions, among others.
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来源期刊
Physics Letters A
Physics Letters A 物理-物理:综合
CiteScore
5.10
自引率
3.80%
发文量
493
审稿时长
30 days
期刊介绍: Physics Letters A offers an exciting publication outlet for novel and frontier physics. It encourages the submission of new research on: condensed matter physics, theoretical physics, nonlinear science, statistical physics, mathematical and computational physics, general and cross-disciplinary physics (including foundations), atomic, molecular and cluster physics, plasma and fluid physics, optical physics, biological physics and nanoscience. No articles on High Energy and Nuclear Physics are published in Physics Letters A. The journal''s high standard and wide dissemination ensures a broad readership amongst the physics community. Rapid publication times and flexible length restrictions give Physics Letters A the edge over other journals in the field.
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