Scanning Tunneling Microscopy and Spectroscopy Investigation of a Kagome Magnet YMn<sub>6</sub>Sn<sub>6</sub>
ORAL
Abstract
Kagome magnets have been proposed to host many exotic phenomena, such as spin liquid and Weyl semimetal phases. A hallmark signature of their band structure is a dispersionless "flat" band, accopanied by a Dirac dispersion near the Brillouin zone edge. We use low-temperature spectroscopic-imaging scanning tunneling microscopy (SI-STM) to investigate the surface structure and low energy electronic properties of a kagome magnet YMn6Sn6. We find a sharp spectral peak Ep close to the Fermi level, which can be linearly tunned by magnetic field closer to Fermi level. By further imaging scattering and interference of electrons on the kagome Mn surface, we are also able to visualize a Dirac like band dispersion, terminating near Ep. Remarkably, external magnetic field also shifts this Dirac dispersion to higher energy regardless of the relative direction of the magnetic field. This diamagnetic behavior cannot be explained by spin Zeeman coupling, and points towards the emergence of orbital magnetism in this system.
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Presenters
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Hong Li
Boston College
Authors
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Hong Li
Boston College
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He Zhao
Boston College
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Qi Wang
Physics, Renmin University of China, Department of Physics and Beijing Key Laboratory of Opto-electronic Functional Materials and Micro-nano Devices, Renmin University of China
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Qiangwei Yin
Physics, Renmin University of China
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Ning-Ning Zhao
Physics, Renmin University of China
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Kai Liu
Renmin University of China, Physics, Renmin University of China
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Ziqiang Wang
Boston University, Physics, Boston College, Boston College, Department of Physics, Boston College
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Hechang Lei
Renmin university of China, Renmin University of China, Boston College, International Center for Quantum Materials, Peking University
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Ilija Zeljkovic
Boston College