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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Spin-Hall magnetoresistance in multidomain helical spiral systems
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Spin-Hall magnetoresistance in multidomain helical spiral systems

机译:多麦田螺旋螺旋系统中的旋转厅磁阻

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摘要

We study the spin-Hall magnetoresistance (SMR) in multidomain helical spiral magnet Cu2OSeO3| Pt heterostructures. We compare the SMR response of Cu2OSeO3 at 5 K, when the magnetic domains are almost frozen, to that at elevated temperatures, when domain walls move easily. At 5 K the SMR amplitude vanishes at low applied magnetic fields, while at 50 K it does not. This phenomenon can be explained by the effect of the magnetic field on the domain structure of Cu2OSeO3. At elevated temperatures the system can reach the thermodynamic equilibrium state, in which a single domain that has a minimal energy for a given field direction occupies the whole sample and gives rise to a nonzero SMR signal. In contrast at 5 K, the three types of domains with mutually orthogonal spiral wave vectors have equal volumes independent of the field direction, which leads to the cancellation of the SMR signal at low fields. In the single-domain conical spiral and collinear ferrimagnetic states, the angular and field dependence of the SMR is found to be same at all temperatures (T <= 50 K). This behavior can be understood within the framework of the SMR theory developed for collinear magnets.
机译:我们研究了多麦田螺旋螺旋磁铁Cu2OSEO3的旋转厅磁阻(SMR)| Pt异质结构。当磁性畴几乎冷冻时,将Cu2oseO3的SMR响应进行比较,在升高的温度下,当畴壁易于移动时。在5 k处,SMR幅度在低施加的磁场下消失,而在50 k处则不会。这种现象可以通过磁场对Cu2OSEO3的结构域结构的影响来解释。在高温下,系统可以到达热力学平衡状态,其中具有用于给定场方向的最小能量的单个域占据整个样本并产生非零SMR信号。相反,在5 k下,具有相互正交的螺旋波矢量的三种类型的域具有与场方向无关的等量,这导致在低场处的SMR信号的取消。在单结构域锥形螺旋和共线纤维磁性状态下,发现SMR的角场依赖性在所有温度下相同(T <= 50 k)。可以在为共线磁体开发的SMR理论的框架内理解这种行为。

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