在以舞蹈为基础的人类拓绝缘体中的奇拉边缘波.
Matthew Du1, Juan B Pérez-Sánchez1, Jorge A Campos-Gonzalez-Angulo1
1Department of Chemistry and Biochemistry, University of California San Diego, La Jolla, CA 92093, USA.
Science advances
|August 28, 2024
概括
人类可以通过舞蹈模仿拓绝缘体,在网格边缘表现出强大的单向运动. 这种新的方法将波浪物理原理扩展到舞蹈系统.
科学领域:
- 物理 物理学 物理
- 编舞 编舞 编舞 编舞
- 跨学科科学 跨学科科学
背景情况:
- 拓绝缘体表现出受保护的边界传输,对混乱具有坚固性.
- 这种最初在电子材料中观察到的现象已经扩展到其他物理系统.
- 拓绝缘体的强度和独特的运输特性促使在更广泛的背景下进行探索.
研究的目的:
- 为了研究拓绝缘体特性对新系统的适用性:人类编舞.
- 通过在正方形网格上使用人类舞蹈合奏来演示拓保护的边界运输.
- 将波物理和拓现象的概念框架扩展到表演艺术.
主要方法:
- 在一个方形网格上排列的一组人类模拟了一个拓绝缘体.
- 舞蹈编舞的设计是为了展示沿着格子边缘的单向运动流.
- 通过移除舞者 (模拟障碍或边缘修改) 来测试系统的稳定性.
主要成果:
- 人类舞蹈组合成功模仿了拓绝缘体的行为.
- 沿着舞蹈网格边缘观察到单向,拓保护的运动流.
- 观察到的效果即使在舞者被移除后仍然存在,显示出强度.
结论:
- 拓绝缘体原理可以有效地转化为一个编舞系统.
- 人类运动可以被编排,以表现出强大的,边缘局部化的,单向的流动.
- 这项研究将波浪物理与舞蹈联系在一起,突出了拓现象的普遍性.
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