Zhang Xue, Reina-Gálvez Jose, Wolf Christoph, Wang Yu, Aubin Hervé, Heinrich Andreas J, Choi Taeyoung
Center for Quantum Nanoscience, Institute for Basic Science (IBS), Seoul 03760, Republic of Korea.
Ewha Womans University, Seoul 03760, Republic of Korea.
ACS Nano. 2023 Sep 12;17(17):16935-16942. doi: 10.1021/acsnano.3c04024. Epub 2023 Aug 29.
Investigating the quantum properties of individual spins adsorbed on surfaces by electron spin resonance combined with scanning tunneling microscopy (ESR-STM) has shown great potential for the development of quantum information technology on the atomic scale. A magnetic tip exhibiting high spin polarization is critical for performing an ESR-STM experiment. While the tip has been conventionally treated as providing a static magnetic field in ESR-STM, it was found that the tip can exhibit bistability, influencing ESR spectra. Ideally, the ESR splitting caused by the magnetic interaction between two spins on a surface should be independent of the tip. However, we found that the measured ESR splitting of a metal atom-molecule heterodimer can be tip-dependent. Detailed theoretical analysis reveals that this tip-dependent ESR splitting is caused by a different interaction energy between the tip and each spin of the heterodimer. Our work provides a comprehensive reference for characterizing tip features in ESR-STM experiments and highlights the importance of employing a proper physical model when describing the ESR tip, in particular, for heterospin systems.
通过电子自旋共振结合扫描隧道显微镜(ESR-STM)研究吸附在表面的单个自旋的量子特性,已显示出在原子尺度上发展量子信息技术的巨大潜力。具有高自旋极化的磁性针尖对于进行ESR-STM实验至关重要。虽然在ESR-STM中,针尖通常被视为提供静态磁场,但人们发现针尖会表现出双稳性,从而影响ESR光谱。理想情况下,表面上两个自旋之间的磁相互作用引起的ESR分裂应与针尖无关。然而,我们发现金属原子-分子异二聚体的测量ESR分裂可能与针尖有关。详细的理论分析表明,这种与针尖有关的ESR分裂是由针尖与异二聚体每个自旋之间不同的相互作用能引起的。我们的工作为在ESR-STM实验中表征针尖特性提供了全面的参考,并强调了在描述ESR针尖时采用适当物理模型的重要性,特别是对于异自旋系统。