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Ferromagnetism Near Room Temperature in the Cleavable van der Waals Crystal Fe5GeTe2

机译:铁磁场在碎位van der waals crystal fe5paree2附近的室温

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摘要

Two-dimensional materials with intrinsic functionality are becoming increasingly important in exploring fundamental condensed matter science and for developing advanced technologies. Bulk crystals that can be exfoliated are particularly relevant to these pursuits as they provide the opportunity to study the role of physical dimensionality and explore device physics in highly crystalline samples and designer heterostructures in a routine manner. Magnetism is a key element in these endeavors; however, relatively few cleavable materials are magnetic and none possess magnetic order at ambient conditions. Here, we introduce Fe5-xGeTe2 as a cleavable material with ferromagnetic behavior at room temperature. We established intrinsic magnetic order at room temperature in bulk crystals (T-C = 310 K) through magnetization measurements and in exfoliated, thin flakes (T-C approximate to 280 K) using the anomalous Hall effect. Our work reveals Fe5GeTe2 as a prime candidate for incorporating intrinsic magnetism into functional van der Waals heterostructures and devices near room temperature.
机译:具有内在功能的二维材料在探索基本炼细的物质科学和开发先进技术方面越来越重要。可以剥离的散装晶体与这些追求特别相关,因为它们提供了研究物理维度和探讨高度结晶样品和设计者异质结构的探索物理物理学的机会。磁性是这些努力的关键因素;然而,相对较少的可裂解材料是磁性的,无处不在环境条件下具有磁性秩序。在这里,我们将Fe5-xgete2介绍为可切割材料,室温下具有铁磁行为。我们使用异常霍尔效应在散装晶体(T-C = 310K)的室温下在室温下在室温下建立了内在磁阶(T-C = 310 k),使用异常霍尔效应。我们的工作揭示了Fe5Gete2作为将内在磁性掺入功能范围内的型候选者,以在室温附近的功能范围内的功能范围内和器件。

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