activity
20162026
most citedAll-electrical switching of a topological non-collinear antiferromagnet at room temperature

95 citations · 183 across the 5 of their papers we have counts for

collaborators

6 papers

cond-mat.mtrl-sci2026

Epitaxial growth and magneto-transport properties of kagome metal FeGe thin films

Xiaoyue Song, Yanshen Chen, Yongcheng Deng +5

Antiferromagnetic kagome metal FeGe has attracted tremendous attention in condensed matter physics due to the charge density wave (CDW) being well below its magnetic transition tem…

cond-mat.mtrl-sci2025★ 3 cited

Anomalous magnetoresistance in an antiferromagnetic Kagome semimetal heterostructures

Xionghua Liu, Qiyuan Feng, Weibin Cui +8

Antiferromagnetic Kagome semimetals have attracted tremendous attentions for their potential application in antiferromagnetic topological spintronics. Effectively manipulating Kago…

cond-mat.mes-hall2022★ 95 cited

All-electrical switching of a topological non-collinear antiferromagnet at room temperature

Yongcheng Deng, Xionghua Liu, Yiyuan Chen +7

Non-collinear antiferromagnetic Weyl semimetals, combining the advantages of a zero stray field and ultrafast spin dynamics as well as a large anomalous Hall effect and the chiral…

physics.app-ph2020★ 20 cited

Controlling vertical magnetization shift by spin-orbit torque in ferromagnetic/antiferromagnetic/ferromagnetic heterostructure

Z. P. Zhou, X. H. Liu, K. Y. Wang

We report the control of vertical magnetization shift (VMS) and exchange bias through spin-orbit torque (SOT) in Pt/Co/Ir25Mn75/Co heterostructure device. The exchange bias accompa…

physics.app-ph2018

Manipulation of magnetizations by spin-orbit torques

Yucai Li, Kevin William Edmonds, Xionghua Liu +2

The control of magnetization by electric current is a rapidly developing area motivated by a strong synergy between breakthrough basic research discoveries and industrial applicati…

cond-mat.mtrl-sci2016★ 65 cited

Fe3O4 thin films: controlling and manipulating an elusive quantum material

X. H. Liu, C. F. Chang, A. D. Rata +2

Fe3O4 (magnetite) is one of the most elusive quantum materials and at the same time one of the most studied transition metal oxide materials for thin film applications. The theoret…