activity
20162022
most citedQuantum Hall effect in a bulk antiferromagnet EuMnBi with magnetically confined two-dimensional Dirac fermions

222 citations · 222 across the 3 of their papers we have counts for

collaborators

7 papers

cond-mat.mes-hall2022

Room-temperature chirality switching in a helimagnetic thin film

Hidetoshi Masuda, Takeshi Seki, Yoichi Nii +3

Helimagnetic structures, in which the magnetic moments are spirally ordered, host an internal degree of freedom called chirality (or helicity) corresponding to the handedness of th…

cond-mat.mtrl-sci2020

Nonreciprocal thermal transport in a multiferroic helimagnet

Yuji Hirokane, Yoichi Nii, Hidetoshi Masuda +1

Breaking of spatial inversion symmetry (SIS) induces unique phenomena in condensed matter. Besides the classic examples such as natural optical activity and piezoelectricity, the s…

cond-mat.mtrl-sci2020

Field-induced spin reorientation in the antiferromagnetic Dirac material EuMnBi revealed by neutron and resonant x-ray diffraction

H. Masuda, H. Sakai, H. Takahashi +7

Field-dependent magnetic structure of a layered Dirac material EuMnBi was investigated in detail by the single crystal neutron diffraction and the resonant x-ray magnetic diffr…

cond-mat.mtrl-sci2018

Observation of Magnetopiezoelectric Effect in Antiferromagnetic Metal EuMnBi2

Y. Shiomi, H. Watanabe, H. Masuda +3

We have experimentally studied a magnetopiezoelectric effect predicted recently for magnetic metals with low crystal symmetries. In EuMnBi2 with antiferromagnetic Mn moments at 77…

cond-mat.str-el2018

Impact of antiferromagnetic order on Landau level splitting of quasi-two-dimensional Dirac fermions in EuMnBi

H. Masuda, H. Sakai, M. Tokunaga +7

We report spin-split Landau levels of quasi-two-dimensional Dirac fermions in a layered antiferromagnet EuMnBi, as revealed by interlayer resistivity measurements in a tilted m…

cond-mat.str-el2017222 cited

Quantum Hall effect in a bulk antiferromagnet EuMnBi with magnetically confined two-dimensional Dirac fermions

H. Masuda, H. Sakai, M. Tokunaga +11

For the innovation of spintronic technologies, Dirac materials, in which the low-energy excitation is described as relativistic Dirac fermions, are one of the most promising system…