在异质和动态介质中移动物体的波动量塑造
Bakhtiyar Orazbayev1,2, Matthieu Malléjac2, Nicolas Bachelard3,4
1Physics Department, School of Sciences and Humanities, Nazarbayev University, Astana, Kazakhstan.
Nature physics
|September 16, 2024
概括
研究人员开发了一种使用声波移动物体的新方法,即使在复杂和不断变化的环境中. 这种技术优化了声音的动量,使得它可以在不需要知道物体属性或介质的情况下进行操作.
科学领域:
- 声学操纵是一种声学操纵.
- 基于波的对象控制器.
- 散射介质物理学的分散介质.
背景情况:
- 光学和声学针利用波动动量来操纵物体.
- 目前的方法需要高度控制,静态的环境,限制应用.
- 无序和动态的媒体对基于波的操纵构成重大挑战.
研究的目的:
- 为了克服当前基于波的操纵技术的局限性.
- 在复杂的,动态的散射介质中展示对象操纵.
- 为了能够精确控制物体的运动和旋转,使用量身定制的声音波.
主要方法:
- 在远场的声音波动量的代优化.
- 散射矩阵的实时测量.
- 使用定位指南星进行反.
主要成果:
- 在无序和动态媒体中成功操纵和旋转物体.
- 方法不需要对对象属性或介质结构的先验知识.
- 证明了对声势进行最佳调整,以有效控制.
结论:
- 开发的方法将基于波的对象操纵扩展到复杂的散射环境.
- 这种技术为生物医学应用,传感和制造提供了新的可能性.
- 在动态媒体中实现控制的关键是最佳的动量调整.
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