论文标题

观察巨型轨道磁矩和人工相对论原子和分子的顺磁性转移

Observation of Giant Orbital Magnetic Moments and Paramagnetic Shift in Artificial Relativistic Atoms and Molecules

论文作者

Ge, Zhehao, Slizovskiy, Sergey, Polizogopoulos, Peter, Joshi, Toyanath, Taniguchi, Takashi, Watanabe, Kenji, Lederman, David, Fal'ko, Vladimir I., Velasco Jr, Jairo

论文摘要

近年来,已经在各种材料(例如石墨烯和拓扑绝缘子)中观察到了无质量的狄拉克费物,因此提供了一个固态平台来研究相对论量子现象。单个量子点(QD)和与无质量狄拉克·费米斯形成的耦合QD分别被视为人工相对论原子和分子。这样的结构为超忠实制度中的原子和分子物理学提供了独特的平台。在这里,我们使用扫描隧道显微镜来创建和探测单一和耦合的静电定义的石墨烯QD,以揭示人工相对论纳米结构的独特磁场响应。在单一石墨烯QD中观察到巨型轨道Zeeman分裂和轨道磁矩。对于耦合的石墨烯QD,观察到AHARONOV BOHM振荡和强大的Van Vleck顺磁性移位。人工相对论原子和分子的这种特性可以用于新型磁场感应方式。

Massless Dirac fermions have been observed in various materials such as graphene and topological insulators in recent years, thus offering a solid-state platform to study relativistic quantum phenomena. Single quantum dots (QDs) and coupled QDs formed with massless Dirac fermions can be viewed as artificial relativistic atoms and molecules, respectively. Such structures offer a unique platform to study atomic and molecular physics in the ultra-relativistic regime. Here, we use a scanning tunneling microscope to create and probe single and coupled electrostatically defined graphene QDs to unravel the unique magnetic field responses of artificial relativistic nanostructures. Giant orbital Zeeman splitting and orbital magnetic moment are observed in single graphene QDs. While for coupled graphene QDs, Aharonov Bohm oscillations and strong Van Vleck paramagnetic shift are observed. Such properties of artificial relativistic atoms and molecules can be leveraged for novel magnetic field sensing modalities.

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