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Creation and propagation of a single magnetic domain wall in 2D nanotraps with a square injection pad

机译:用正方形注射垫在2D纳米结构中的创建和传播单个磁畴壁

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摘要

Polycrystalline permalloy 2D nanotraps with a thickness of 20 nm were studied using a Lorentz microscope associated with micro-magnetic simulations. Each trap was designed to create a single head-to-head domain wall. The traps consist of a few nanowires with an in-plane dimension of w nm x 1000 nm (w = 150, 200 and 250 nm). Some structures with an injection pad were also designed to create a single domain wall and propagate it through the structure with the said injection pad. A few of them were patterned to study the nucleation and propagation behavior of such nucleated domain walls using both horizontal magnetic field and injection pad approaches. The case of a domain wall created at the first corner of the trap with a wire width of 200 nm was systematically studied, while single and multiple domain walls can also be created and propagated with or without an injection structure. The characteristics of such movements were exploited with an emphasis on a single head-to-head domain wall.
机译:利用洛伦兹显微镜和微磁模拟研究了厚度为20nm的多晶坡莫合金2D纳米带。每个陷阱的设计都是为了创建一个单独的头对头域墙。陷阱由几根面内尺寸为w nm x 1000 nm(w=150、200和250 nm)的纳米线组成。一些带有注入垫的结构也被设计成创建单个畴壁,并将其通过带有所述注入垫的结构传播。利用水平磁场和注入垫两种方法,对其中一些样品进行了图形化,以研究此类有核畴壁的成核和传播行为。系统地研究了在阱的第一个角处产生的宽度为200 nm的畴壁的情况,同时也可以在有或没有注入结构的情况下产生和传播单个和多个畴壁。这种运动的特点被利用,重点是一个单一的头对头域墙。

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