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Size- and dimensionality-dependent optical, magnetic and magneto-optical properties of binary europium-based nanocrystals: EuX (X = O, S, Se, Te)

机译:二元euro基纳米晶体的尺寸和尺寸相关的光学,磁性和磁光学性质:EuX(X = O,S,Se,Te)

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摘要

Europium chalcogenides (EuX, X = O, S, Se, Te), a class of prototypical Heisenberg magnetic semiconductors, exhibit intriguing properties in optics, magnetism, and magneto-optics at the nanoscale, and have broad application potential in optical/magnetic sensors, spintronics, optical isolators, etc. EuX nanocrystals (NCs) exhibit enhanced properties, such as high saturation magnetization, a strong magneto-optic effect (Faraday rotation), and high magneto resistance, which are all unanimously dependent on the NC's size, shape, and surface information. In this report, we give an overview of the fundamental properties of bulk EuX, and illustrate the quantum confinement effects on the optical, magnetic and magneto-optical properties of EuX nanostructures. We then focus on doping and self-assembly-two efficient methods that enhance magnetic properties by manipulating magnetic coupling in EuX nanostructures. In particular, we look towards future research on Eu2+ NCs, which along with the overview provides an up-to-date platform for evaluating the fundamental properties and application potential of Eu-based semiconductors.
机译:cha硫属元素化物(EuX,X = O,S,Se,Te),是一类典型的海森堡磁性半导体,在纳米级的光学,磁性和磁光领域表现出令人着迷的特性,并且在光学/磁性传感器中具有广泛的应用潜力EuX纳米晶体(NC)表现出增强的性能,例如高饱和磁化强度,强磁光效应(法拉第旋转)和高磁致电阻,所有这些都取决于NC的尺寸,形状以及表面信息。在这份报告中,我们概述了整体EuX的基本性质,并说明了量子限制对EuX纳米结构的光学,磁性和磁光性质的影响。然后,我们关注于掺杂和自组装这两种有效方法,它们通过操纵EuX纳米结构中的磁耦合来增强磁性能。特别是,我们期待着对Eu2 + NC的未来研究,该研究与概述一起为评估Eu基半导体的基本特性和应用潜力提供了一个最新的平台。

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