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Magnetic Properties of CoFeSiB/(Co, CoPtRh) Multilayer Microwires

机译:CoFeSiB /(Co,CoPtRh)多层微丝的磁性能

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The magnetic and magnetotransport properties have been investigated in a family of multilayer glass-coated microwires with a soft CoFeSiB nucleus and magnetically harder Co and CoPtRh deposited outer layers. Their magnetic properties are mainly determined by the magnetic interactions between the magnetic phases, i.e., the magnetoelastic coupling generated by the supplementary mechanical stresses induced by the deposited layers and by the magnetostatic interactions between the soft magnetic inner core and the hard magnetic deposited layers. The deposition of 900 nm-thick hard magnetic layers (Co and CoPtRh) on the soft magnetic CoFeSiB glass-coated microwire leads to a biphase magnetic character. Isothermal annealing at 300 °C for 1 h of multilayer microwires determines a slight decrease of the coercive field, an increase in the relative magnetic permeability, and to an increase in the magnetoimpedance response, more significant for the CoFeSiB/Co multilayer microwires. The possibility to design the magnetic and magnetotransport properties through magnetic coupling and annealing makes these materials very competitive as the functional sensing elements.
机译:在具有软CoFeSiB原子核和磁性较硬的Co和CoPtRh沉积外层的多层多层玻璃涂层微线中,已经研究了磁性和磁传输特性。它们的磁性主要取决于磁性相之间的磁性相互作用,即由沉积层引起的附加机械应力以及软磁性内芯与硬磁性沉积层之间的静磁相互作用所产生的磁弹性耦合。在涂覆有软磁性CoFeSiB玻璃的微线上沉积900 nm厚的硬磁层(Co和CoPtRh)会导致双相磁特性。多层微丝在300°C下等温退火1 h决定了矫顽场的轻微降低,相对磁导率的增加以及磁阻响应的增加,对于CoFeSiB / Co多层微丝而言更为显着。通过磁耦合和退火来设计磁和磁传输特性的可能性使这些材料作为功能传感元件具有很高的竞争力。

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