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Magnetic behavior of Joule-heated magnetic core-shell nanowires with positive magnetostrictive core material

机译:带有正磁致伸缩芯材料的焦耳热磁芯-壳纳米线的磁行为

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Temperature field is an important parameter to be known and controlled in the magnetization process of the core-shell nanowires. The paper analyzes the temperature dependence of hysteretic process in a core-shell nanowire subjected to a dc Joule heating process. An electrical current that passes through the wire induces a temperature and a thermal stress field in the system. Spatial and temporal evolution of the temperature in system was analyzed using a model based on time-dependent heat conduction equation. The stresses determined by thermal gradients and different expansion characteristics of core and shell materials were computed. The temperature and stress depend on the size parameters of the system, dc Joule current and the initial temperature of the system. The magnetic behavior of the nanowire was analyzed using the Micromag application. The magnetic state of the core is influenced by the temperature field induced by a dc current applied to the system. For core materials with positive magnetostriction coefficient the coercive field increases at the increase of dc current intensity passed through the system. (C) 2015 Elsevier B.V. All rights reserved.
机译:温度场是在核-壳纳米线的磁化过程中已知和控制的重要参数。本文分析了经受直流焦耳加热过程的核-壳纳米线中磁滞过程的温度依赖性。穿过电线的电流在系统中感应出温度和热应力场。使用基于时间的热传导方程模型分析系统中温度的时空变化。计算了由热梯度和核壳材料的不同膨胀特性确定的应力。温度和应力取决于系统的尺寸参数,直流焦耳电流和系统的初始温度。使用Micromag应用程序分析了纳米线的磁性。铁芯的磁性状态受施加到系统的直流电流感应的温度场的影响。对于具有正磁致伸缩系数的芯材,矫顽场随着通过系统的直流电流强度的增加而增加。 (C)2015 Elsevier B.V.保留所有权利。

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