Magnetic and transport properties of RMn<sub>6</sub>Sn<sub>6</sub> (R=Er, Ho) kagome magnet
ORAL
Abstract
Materials that possess interplays between magnetism, correlation, and band topology often result in various exotic topological phenomena, such as giant anomalous Hall effect, Dirac fermions with large magnetic field tunability, magnetic Weyl semimetal state, and Chern gapped Dirac fermions. Rare earth intermetallic compound, RMn6Sn6, is among the most interesting kagome systems to study intrinsic quantum behavior. In this presentation, we will discuss the phase transition, and effect of external stimuli such as temperature, magnetic field, and pressure on magnetic, thermal and transport properties for RMn6Sn6 (R=Er, Ho). Compared with HoMn6Sn6, ErMn6Sn6 shows an anomalously large Hall effect and complex magnetism. In addition, the experimental results show that RMn6Sn6 is extremely sensitive to applied physical pressure. We will compare the magnetic and transport behaviors for Er and Ho-based kagome magnets.
*The work at Buffalo State was supported by the faculty startup fund from the Dean's Office, School of Arts and Sciences, and Undergraduate Research Office, State University of New York (SUNY), Buffalo State.
–
Publication: Dhakal et al., Phys. Rev. B 104, L161115 (2021)
Presenters
-
Arjun K Pathak
- Buffalo State College
- SUNY Buffalo State College
- State University of New York (SUNY), Buffalo State, Buffalo, NY