Static magnetic field concentration and enhancement using magnetic materials with positive permeability

F. Sun, S. He
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引用次数: 20

Abstract

In this paper a novel compressor for static magnetic fields is proposed based on finite embedded transformation optics. When the DC magnetic field passes through the designed device, the magnetic field can be compressed inside the device. After it passes through the device, one can obtain an enhanced static magnetic field behind the output surface of the device (in a free space region). We can also combine our compressor with some other structures to get a higher static magnetic field enhancement in a free space region. In contrast with other devices based on transformation optics for enhancing static magnetic fields, our device is not a closed structure and thus has some special applications (e.g., for controlling magnetic nano-particles for gene and drag delivery). The designed compressor can be constructed by using currently available materials or DC meta-materials with positive permeability. Numerical simulation verifies good performance of our device.
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利用正磁导率磁性材料增强静磁场
本文提出了一种基于有限嵌入变换光学的新型静磁场压缩器。当直流磁场通过所设计的器件时,可以将磁场压缩到器件内部。通过器件后,在器件输出面后方(自由空间区域)可获得增强的静磁场。我们还可以将压缩机与其他结构组合在一起,在自由空间区域获得更高的静态磁场增强。与其他基于变换光学增强静磁场的器件相比,我们的器件不是封闭结构,因此具有一些特殊的应用(例如,用于控制磁性纳米颗粒的基因和拖动传递)。所设计的压缩机可采用现有材料或具有正磁导率的直流超材料构建。数值仿真验证了该装置的良好性能。
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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