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Proximitized materials

机译:偏移材料

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摘要

Advances in scaling down heterostructures and having an improved interface quality together with atomically thin two-dimensional materials suggest a novel approach to systematically design materials. A given material can be transformed through proximity effects whereby it acquires properties of its neighbors, for example, becoming superconducting, magnetic, topologically nontrivial, or with an enhanced spin–orbit coupling. Such proximity effects not only complement the conventional methods of designing materials by doping or functionalization but also can overcome their various limitations. In proximitized materials, it is possible to realize properties that are not present in any constituent region of the considered heterostructure. While the focus is on magnetic and spin–orbit proximity effects with their applications in spintronics, the outlined principles also provide a broader framework for employing other proximity effects to tailor materials and realize novel phenomena.
机译:缩放缩小异质结构并与原子薄二维材料一起具有改进的界面质量,提出了一种新的系统设计材料的方法。可以通过接近效应来改变给定材料,从而它获取其邻居的性质,例如,成为超导,磁,拓扑非动力,或者具有增强的旋转轨道耦合。这种近似效应不仅通过掺杂或官能化补充了设计材料的传统方法,而且可以克服各种局限性。在介质材料中,可以实现所考虑的异质结构的任何组成区域中不存在的性质。虽然重点在于磁性和旋转轨道接近效果,但概述的原则还提供了更广泛的框架,用于采用其他近似效应来定制材料并实现新颖现象。

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