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The frequency-domain technique, commonly used in analyzing and designing feedback control systems, is effective for linear, time-invariant systems. However, it falls short when dealing with nonlinear, time-varying, and multiple-input multiple-output systems. The time-domain or state-space approach addresses these limitations by utilizing state variables to construct simultaneous, first-order differential equations, known as state equations, for an nth-order system.
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相关实验视频

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没有维度缩小的等级拓状态.

Joel R Pyfrom1, Kai Sun2, Jihong A Ma1,3,4

  • 1Department of Mechanical Engineering, University of Vermont, Burlington, VT 05405, United States of America.

Reports on progress in physics. Physical Society (Great Britain)
|November 6, 2025
PubMed
概括

研究人员介绍了一种新的方法,通过重新定位域墙来创建等级拓状态. 这种方法在不破坏对称性的情况下产生新的拓模式,扩大拓分类,并使复杂的受保护模式网络成为可能.

关键词:
在Su-Schrieffer-Heeger格子中使用.类似碎形结构的结构.一般化卷轴编号 总化卷轴编号层次的拓状态 层次的拓状态音声晶体是一种声学晶体.

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科学领域:

  • 凝聚物质物理学 凝聚物质物理学
  • 拓学材料 拓学材料
  • 经典的波浪现象 经典的波浪现象

背景情况:

  • 拓绝缘器具有由散装拓保护的边界状态,这个概念起源于量子力学,并扩展到像声学这样的经典波.
  • 传统的拓状态是 (n-1) 维的,在一个n维的批量中,并且可以被除,潜在地创建更低维的状态 (更高层次的拓绝缘体).

研究的目的:

  • 引入一种替代的机制来消除拓状态的间隙并形成新的拓模式.
  • 在不破坏单元细胞对称性或减少维度的情况下实现这一目标.
  • 扩大传统的拓分类,并使受保护模式的工程.

主要方法:

  • 使用一维和二维的苏-施里弗-希格尔模型.
  • 采用拓域墙壁的受控重新定位来构建层次单元的单元.
  • 分析了高层次层次拓状态的出现,其特点是一般化的绕数.

主要成果:

  • 展示了一种方法,可以在保持底层对称性的同时消除现有的域墙状态.
  • 通过代的域壁重新定位,成功地产生了更高层次层次的拓状态.
  • 展示了实现多个,潜在的无限,层次的拓状态的潜力.

结论:

  • 拟议的方法为工程保护的拓模式的复杂网络提供了一个多功能路线.
  • 这项工作将传统的拓分类扩展到现有框架之外.
  • 该方法为设计更高维度的拓状态提供了一个新的途径.