Optically driven method for magnetically levitating a diamagnetic material using the photothermal effect

Y. Mizutani, T. Iwata, A. Tsutsumi, Y. Otani
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引用次数: 3

Abstract

Optically driven actuators do not require contact and thus can be used to generate movement remotely. In this paper, we propose a new method for optically driving a magnetic levitation system that consists of a diamagnetic material as the moving object, a neodymium magnet, and a temperature-sensitive ferrite for varying the potential energy of the diamagnetic object. The diamagnetic object is levitated by the magnetic force between it and the neodymium magnet. Laser irradiation of the temperature-sensitive ferrite reduces its magnetic susceptibility due to the photothermal effect. In this study, the conditions for levitation are derived using a numerical approach. The results reveal that movement can be controlled in a three-dimensional r egion.
利用光热效应磁悬浮抗磁性材料的光驱动方法
光学驱动的致动器不需要接触,因此可以用于远程产生运动。本文提出了一种光学驱动磁悬浮系统的新方法,该系统由抗磁性材料作为运动物体,钕磁铁和温度敏感铁氧体组成,用于改变抗磁性物体的势能。抗磁性物体在它和钕磁铁之间的磁力作用下悬浮起来。由于光热效应,激光照射温度敏感铁氧体降低了其磁化率。在本研究中,采用数值方法推导了悬浮的条件。结果表明,运动可以在三维区域内进行控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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