一个可解决的模型,用于对称性破坏的相位过渡.
Shatrughna Kumar1, Pengfei Li2, Liangwei Zeng3
1Department of Physical Electronics, School of Electrical Engineering, Faculty of Engineering, and Center for Light-Matter Interaction, Tel Aviv University, Tel Aviv, 69978, Israel.
Scientific reports
|August 23, 2023
概括
我们介绍了一个可解决的单子相变模型,展示了第一类和第二类对称性破坏的分叉. 这个模型为线性-非线性电位组合中的单子提供了精确的解决方案.
科学领域:
- 非线性动力学是一种非线性动力学.
- 索利顿物理学 物理
- 阶段过渡 阶段过渡
背景情况:
- 在分析上可解决的模型对于理解相位过渡和分叉至关重要.
- 现有的模型主要针对均介质中的相变,而不是像单子这样的局部状态.
- 生产单子的整合方程通常缺乏内在相位过渡.
研究的目的:
- 引入一种新的可解决模型,用于单子的对称性破坏相位过渡.
- 为了研究单体的第一种 (亚临界) 和第二种 (超临界) 两叉.
- 在线性-非线性双井潜力组合中分析单子子行为.
主要方法:
- 开发一个可分析解决的模型.
- 在一个由一对对称的三角函数表示的电位中对单子进行数学分析.
- 考虑自我聚焦和自我脱焦的非线性.
主要成果:
- 在自我聚焦的情况下,对对称和不对称的单子得到了准确的解决方案.
- 在第一种和第二种对称性破坏过渡之间切换的演示.
- 观察第二种过渡,在自我失焦模型的第一个兴奋状态中打破反对称性.
结论:
- 开发的模型成功地描述了单子的对称性破坏相位过渡.
- 该模型提供了精确的解决方案,为复杂潜力的单子动态提供了基准.
- 这项工作将阶段过渡的理解扩展到局部非线性现象.
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