Project supported by the National Natural Science Foundation of China(Grant No.52173283).
Two-dimensional(2D)ferrovalley materials with valley-dependent Hall effect have attracted great interest due to their significant applications in spintronics.In this paper,by using first-principles computational simul...
supported by the National Natural Science foundation of China(Grant Nos.U1932155,12374116,12204298 and 12274109);the Hangzhou Joint Fund of the Zhejiang Provincial Natural Science Foundation of China(Grant No.LHZSZ24A040001);funded by the Guangdong Basic and Applied Basic Research Foundation(Grant No.2022B1515120020)。
Electron correlation often gives birth to various orders in quantum materials.Recently,a strongly correlated kagome antiferromagnet Fe Ge is discovered to undergo a charge density wave transition inside the A-type ant...
supported by the National Natural Science Foundation of China(Grant Nos.12204053,and 92265103);the Innovation Program for Quantum Science and Technology(Grant No.2021ZD0302400)。
The interplay between novel topological states and superconductivity has garnered substantial interest due to its potential for topological quantum computing.The Josephson effect serves as a useful probe for edge supe...
Microelectronic magnetic sensors are essential in diverse applications,including automotive,industrial,and consumer electronics.Hall-effect devices hold the largest share of the magnetic sensor market,and they are par...
funded by the Basic Research on National Defense of China(No.JCKY2021603B033),which is gratefully acknowledged。
In order to realize the thrust estimation of the Hall thruster during its flight mission,this study establishes an estimation method based on measurement of the Hall drift current.In this method,the Hall drift current...
support from the Funding for School-level Research Projects of Yancheng Institute of Technology(Grant Nos.xjr2020038,xjr2022039,and xjr2022040)。
Owing to their charge-free property,magnons are highly promising for achieving dissipationless transport without Joule heating,and are thus potentially applicable to energy-efficient devices.Here,we investigate valley...
supported by the Startup Foundation in Tiangong University(Grant No.63010201/52010399);supported by the Office of Basic Energy Sciences,Division of Materials Sciences and Engineering,U.S.Department of Energy(Grant No.DE-SC0020221)。
Nonlinear Hall effect(NLHE)has been detected in various of condensed matter systems.Unlike linear Hall effect,NLHE may exist in physical systems with broken inversion symmetry in crystals.On the other hand,real space ...
support from the Shenzhen Excellent Scientific and Technological Innovation Talent Training Program(RCBS20210609103859072);Shenzhen Institutions of Higher Learning Stability Support Plan(GXWD20231130102040001);the National Natural Science Foundation of China(62105081);support from the National Natural Science Foundation of China(62174044);support from the DFG(SFB1170);the Würzburg-Dresden Cluster of Excellence ct.qmat,EXC2147,Project ID 390858490;the Bavarian Ministry of Economic Affairs,Regional Development and Energy within the High Tech Agenda Project‘‘Bausteine für das Quanten Computing auf Basis Topologischer Materialen”。
The Hall effect,discovered in 1879,requires magnetic fields or magnetic orders to produce a transverse voltage signal in response to the longitudinal driving electric field.However,the nonlinear Hall effect(NLHE),prop...
supported by the Natural Science Foundation of Shanghai(Grant Nos.21ZR1420500,and 21JC1402300);the Natural Science Foundation of Chongqing(Grant No.CSTB-2022NSCQ-MSX1678);the National Natural Science Foundation of China(Grant Nos.12374105,and 12350710785);the Fundamental Research Funds for the Central Universities;the Schweizerische Nationalfonds zur F?rderung der Wissenschaftlichen Forschung(SNF)(Grant Nos.200021169455,and 200021188706);support from Paul Scherrer Institute Research Grant(Grant No.202101346)。
The REAl(Si,Ge)(RE=rare earth)family,known to break both the inversion-and time-reversal symmetries,represents one of the most suitable platforms for investigating the interplay between correlated-electron phenomena a...
supported by the National Key R&D Program of China(Grant No.2022YFA1602603);the Basic Research Program of the Chinese Academy of Sciences Based on Major Scientific Infrastructures(Grant No.JZHKYPT-2021-08);the National Natural Science Foundation of China(Grant No.12104459);the Excellent Program of Hefei Science Center CAS(Grant No.2021HSC-CIP016)。
Novel magnetic materials with non-trivial magnetic structures have led to exotic magnetic transport properties and significantly promoted the development of spintronics in recent years.Among them is the Crx Tey family...