Zhuang Rencheng, Zhou Dekai, Liu Junmin, Chang Xiaocong, Zhang Guangyu, Li Longqiu
State Key Laboratory of Robotics and System, Harbin Institute of Technology, Harbin, Heilongjiang, 150001, China.
Chongqing Research Institute, Harbin Institute of Technology, Chongqing, 400722, China.
Adv Sci (Weinh). 2024 Sep;11(36):e2403039. doi: 10.1002/advs.202403039. Epub 2024 Jul 23.
Research on the interfacial instability of two-phase systems can help in gaining a better understanding of various hydrodynamic instabilities in nature. However, owing to the nonlinear and complex spatiotemporal dynamics of the unstable interface, the instability is challenging to control and suppress. This paper presents a novel interfacial instability of the magnetic microswarm induced by the competition between the destabilizing effect of magnetic field and the stabilizing effect of acoustic field. The physics underlying this novel phenomenon is discussed by analyzing the contributions of the external fields. Unlike previous studies, this study demonstrates that the instability is independent of the interfacial force or diffusion effect and can persist without dissipation over time. The manipulation of the unstable interface is further achieved by adjusting the configuration of the magneto-acoustic system. This approach can be used in thermal encoding metamaterials and has great potential applications in systems where the instability is detrimental.
对两相系统界面不稳定性的研究有助于更好地理解自然界中的各种流体动力学不稳定性。然而,由于不稳定界面的非线性和复杂的时空动力学,这种不稳定性难以控制和抑制。本文提出了一种由磁场的去稳定作用和声场的稳定作用之间的竞争引起的磁性微群的新型界面不稳定性。通过分析外部场的贡献来讨论这一新颖现象背后的物理原理。与以往的研究不同,本研究表明这种不稳定性与界面力或扩散效应无关,并且可以随时间无耗散地持续存在。通过调整磁声系统的配置进一步实现了对不稳定界面的操控。这种方法可用于热编码超材料,在不稳定有害的系统中具有巨大的潜在应用价值。