论文标题

通过磁铁测量值探测单层CRSBR CRSBR van der Waals异质结构中的自旋尺寸

Probing the spin dimensionality in single-layer CrSBr van der Waals heterostructures by magneto-transport measurements

论文作者

Boix-Constant, Carla, Mañas-Valero, Samuel, Ruiz, Alberto M., Rybakov, Andrey, Konieczny, Krzysztof Aleksander, Pillet, Sébastien, Baldoví, José J., Coronado, Eugenio

论文摘要

二维(2D)磁性材料为Spintronics and Magnonics中的基本物理学和应用研究提供了前所未有的机会。除了对2D CRI3和CR2GE2TE6的开创性研究外,该新兴领域还扩展到具有不同自旋各向异性和质地的2D抗铁磁铁。特别令人感兴趣的是层状MetAmagnet CRSBR,这是一种相对空气稳定的半导体,由抗磁性耦合的铁磁层(TC〜150 K)形成,可以将其剥落至单层。它提出了一种复杂的磁性行为,具有动态磁性交叉,导致t*〜40 k下方的低温隐藏顺序。在这里,我们检查了2D限制中CRSBR垂直异质结构的磁电流特性。我们的结果证明了铁磁单层的明显低维特征,其短距离相关性高于TC和Ising型平面内各向异性,是沿着TC以下的易于轴自发对齐的旋转。通过沿A和C轴施加适度的磁场,发生了自旋的重新定位,从而导致t*以下的磁力增强。在多层人士中,观察到自旋阀行为,负磁度沿T*以下的三个方向强烈增强。这些结果表明,CRSBR单层/双层提供了研究和控制二维现象现象的理想平台,提供了有关2D磁铁的新见解,并将其集成到垂直的Spintronic设备中。

Two-dimensional (2D) magnetic materials offer unprecedented opportunities for fundamental physics and applied research in spintronics and magnonics. Beyond the pioneering studies on 2D CrI3 and Cr2Ge2Te6, this emerging field has expanded to 2D antiferromagnets exhibiting different spin anisotropies and textures. Of particular interest is the layered metamagnet CrSBr, a relatively air-stable semiconductor formed by antiferromagnetically-coupled ferromagnetic layers (Tc~150 K) that can be exfoliated down to the single-layer. It presents a complex magnetic behavior with a dynamic magnetic crossover leading to a low-temperature hidden order below T*~40 K. Here, we inspect the magneto-transport properties of CrSBr vertical heterostructures in the 2D limit. Our results demonstrate the marked low-dimensional character of the ferromagnetic monolayer, with short-range correlations above Tc and an Ising-type in-plane anisotropy, being the spins spontaneously aligned along the easy-axis b below Tc. By applying moderate magnetic fields along a and c axes, a spin reorientation occurs, leading to a magnetoresistance enhancement below T*. In multilayers, a spin-valve behavior is observed, with negative magnetoresistance strongly enhanced along the three directions below T*. These results show that CrSBr monolayer/bilayer provides an ideal platform for studying and controlling field-induced phenomena in two-dimensions, offering new insights regarding 2D magnets and their integration into vertical spintronic devices.

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