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镝单原子磁体中电子构型与磁稳定性之间的相关性

Correlation between Electronic Configuration and Magnetic Stability in Dysprosium Single Atom Magnets.

作者信息

Donati Fabio, Pivetta Marina, Wolf Christoph, Singha Aparajita, Wäckerlin Christian, Baltic Romana, Fernandes Edgar, de Groot Jean-Guillaume, Ahmed Safa Lamia, Persichetti Luca, Nistor Corneliu, Dreiser Jan, Barla Alessandro, Gambardella Pietro, Brune Harald, Rusponi Stefano

机构信息

Center for Quantum Nanoscience, Institute for Basic Science (IBS), Seoul 03760, Republic of Korea.

Department of Physics, Ewha Womans University, Seoul 03760, Republic of Korea.

出版信息

Nano Lett. 2021 Oct 13;21(19):8266-8273. doi: 10.1021/acs.nanolett.1c02744. Epub 2021 Sep 27.

Abstract

Single atom magnets offer the possibility of magnetic information storage in the most fundamental unit of matter. Identifying the parameters that control the stability of their magnetic states is crucial to design novel quantum magnets with tailored properties. Here, we use X-ray absorption spectroscopy to show that the electronic configuration of dysprosium atoms on MgO(100) thin films can be tuned by the proximity of the metal Ag(100) substrate onto which the MgO films are grown. Increasing the MgO thickness from 2.5 to 9 monolayers induces a change in the dysprosium electronic configuration from 4f to 4f. Hysteresis loops indicate long magnetic lifetimes for both configurations, however, with a different field-dependent magnetic stability. Combining these measurements with scanning tunneling microscopy, density functional theory, and multiplet calculations unveils the role of the adsorption site and charge transfer to the substrate in determining the stability of quantum states in dysprosium single atom magnets.

摘要

单原子磁体提供了在物质最基本单元中存储磁信息的可能性。确定控制其磁态稳定性的参数对于设计具有定制特性的新型量子磁体至关重要。在此,我们利用X射线吸收光谱表明,生长有MgO薄膜的MgO(100)薄膜上镝原子的电子构型可通过MgO薄膜所生长的金属Ag(100)衬底的接近程度进行调节。将MgO厚度从2.5单层增加到9单层会导致镝电子构型从4f变为4f。磁滞回线表明两种构型都具有较长的磁寿命,然而,其磁场依赖性磁稳定性不同。将这些测量结果与扫描隧道显微镜、密度泛函理论和多重态计算相结合,揭示了吸附位点和向衬底的电荷转移在确定镝单原子磁体量子态稳定性中的作用。

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