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Reversible 2D phase transition driven by an electric field: Visualization and control on the atomic scale

机译:电场驱动的可逆2D相变:原子级的可视化和控制

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摘要

We report on a reversible structural phase transition of a two-dimensional system that can be locally induced by an external electric field. Two different structural configurations may coexist within a CO monolayer on Cu(111). The balance between the two phases can be shifted by an external electric field, causing the domain boundaries to move, increasing the area of the favored phase controllable both in location and size. If the field is further enhanced new domains nucleate. The arrangement of the CO molecules on the Cu surface is observed in real time and real space with atomic resolution while the electric field driving the phase transition is easily varied over a broad range. Together with the well-known molecular manipulation of CO adlayers, our findings open exciting prospects for combining spontaneous long-range order with man-made CO structures such as >molecule cascades> or >molecular graphene>. Our new manipulation mode permits us to bridge the gap between fundamental concepts and the fabrication of arbitrary atomic patterns in large scale, by providing unprecedented insight into the physics of structural phase transitions on the atomic scale.
机译:我们报告了一个二维系统的可逆结构相变,它可以由外部电场局部感应。 Cu(111)上的CO单层中可能共存两种不同的结构构型。可以通过外部电场来移动两相之间的平衡,从而导致畴边界移动,从而增加可在位置和大小上均可控制的有利相的面积。如果该领域进一步增强,则新的域将成核。以原子分辨率实时和真实地观察到CO分子在Cu表面的排列,而驱动相变的电场很容易在很宽的范围内变化。结合众所周知的CO附加剂的分子操作,我们的发现为将自发的长程有序与人为的CO结构(例如>分子级联>或>分子石墨烯>)结合在一起开辟了令人兴奋的前景。通过提供对原子级结构相变物理学的空前洞察力,我们的新操纵模式使我们能够弥合基本概念与大规模任意原子图案的制造之间的鸿沟。

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