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Large and Anisotropic Linear Magnetoresistance in Single Crystals of Black Phosphorus Arising From Mobility Fluctuations

机译:迁移率波动引起的黑磷单晶中的大各向异性各向异性线性磁阻

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摘要

Black Phosphorus (BP) is presently attracting immense research interest on the global level due to its high mobility and suitable band gap for potential application in optoelectronics and flexible devices. It was theoretically predicted that BP has a large direction-dependent electrical and magnetotransport anisotropy. Investigations on magnetotransport of BP may therefore provide a new platform for studying the nature of electron transport in layered materials. However, to the best of our knowledge, magnetotransport studies, especially the anisotropic magnetoresistance (MR) effect in layered BP, are rarely reported. Here, we report a large linear MR up to 510% at a magnetic field of 7 Tesla in single crystals of BP. Analysis of the temperature and angle dependence of MR revealed that the large linear MR in our sample originates from mobility fluctuations. Furthermore, we reveal that the large linear MR of layered BP in fact follows a three-dimensional behavior rather than a two-dimensional one. Our results have implications to both the fundamental understanding and magnetoresistive device applications of BP.
机译:由于黑磷(BP)的高迁移率和合适的带隙,因此潜在地在光电子学和柔性设备中应用,目前正在全球范围内引起广泛的研究兴趣。从理论上预测BP具有较大的方向相关的电和磁传输各向异性。因此,对BP磁传输的研究可能会为研究层状材料中电子传输的性质提供一个新的平台。但是,据我们所知,很少进行磁传输研究,尤其是分层BP中的各向异性磁阻(MR)效应。在这里,我们报道了在BP单晶中7特斯拉的磁场下高达510%的大线性MR。对MR的温度和角度依赖性的分析表明,我们样品中的大线性MR源自迁移率波动。此外,我们发现,分层BP的大线性MR实际上遵循三维行为,而不是二维行为。我们的结果对BP的基本理解和磁阻装置应用都有影响。

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