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Magnetization reversal in bent nanofibers of different cross sections

机译:不同截面弯曲纳米纤维的磁化反转

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摘要

Ferromagnetic nanofibers and nanofiber based networks with new electronic, magnetic, mechanical, and other physical properties can be considered significant components of bio-inspired cognitive computing units. For this purpose, it is necessary to examine all relevant physical parameters of such nanofiber networks. Due to the more or less random arrangement of the nanofibers, first of all, the elementary single nanofibers with varying bending radii, from straight fibers to those bent along half-circles, were investigated by micromagnetic simulations, using different angles with respect to the external magnetic field. Different fiber cross sections, i.e., circular, circle-segment, rectangular, significantly altered the coercive fields and their dependence on the bending radius, for the magnetic field oriented differently in relation to the fiber axes. The shapes of the longitudinal and transverse hysteresis curves showed strong differences, depending on cross section, bending radius, and orientation to the magnetic field, often depicting distinct transverse magnetization peaks perpendicular to the fibers for fibers which were not completely oriented parallel to the magnetic field. Varying these parameters thus provides a broad spectrum of magnetization reversal processes in magnetic nanofibers and correspondingly scenarios for a variety of fiber-based information processing. Published by AIP Publishing.
机译:具有新的电子,磁性,机械和其他物理特性的铁磁纳米纤维和基于纳米纤维的网络可以被认为是受生物启发的认知计算单元的重要组成部分。为此,有必要检查这种纳米纤维网络的所有相关物理参数。由于纳米纤维或多或少的随机排列,首先,通过微磁模拟研究了弯曲半径变化的基本单纳米纤维,从直纤维到沿半圆弯曲的弯曲半径,使用相对于外部的不同角度磁场。对于磁场相对于纤维轴的取向不同,不同的纤维横截面,即圆形,圆形,矩形,显着改变了矫顽场及其对弯曲半径的依赖性。纵向和横向磁滞曲线的形状表现出很大的差异,这取决于横截面,弯曲半径和磁场方向,对于不完全平行于磁场定向的纤维,通常会显示出垂直于纤维的明显横向磁化峰。 。因此,改变这些参数可在磁性纳米纤维中提供广泛的磁化反转过程,并相应地提供了各种基于纤维的信息处理方案。由AIP Publishing发布。

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  • 来源
    《Journal of Applied Physics》 |2018年第15期|152112.1-152112.18|共18页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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