Aaron Wegner
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Also affiliated: National Institute of Standards and Technology (2018); NIST Center for Neutron Research (2018); University of Virginia (2018–2020)
Formerly Arkansas Postdoctoral Associate, University of Arkansas through 2021.
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Biography and Research Information
OverviewAI-generated summary
Aaron Wegner's research focuses on condensed matter physics, particularly the study of magnetic topological materials. His work investigates phenomena such as the spin-flop transition in van der Waals antiferromagnets and the evidence for magnetic-field-induced Weyl states in antiferromagnetic topological insulators like Mn(Bi$_{1-x}$Sb$_{x}$)$_{2}$Te$_{4}$. He has also published on the giant topological Hall effect in tetragonal Mn$_{2-x}$Zn$_{x}$Sb and the transport properties of Fe-doped Weyl semimetal WTe$_{2}$. Wegner's research network includes collaborations with Rabindra Basnet at the University of Arkansas at Pine Bluff, and with K. C. Pandey, Jin Hu, and Gokul Acharya at the University of Arkansas at Fayetteville. He has a h-index of 7, with 29 total publications and 239 citations.
Metrics
- h-index: 7
- Publications: 22
- Citations: 257
Positions
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Postdoctoral Associate 2019–2021University of Arkansas Physics ORCID
Selected Publications
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Giant topological Hall effect in centrosymmetric tetragonal Mn2−xZnxSb (2021)
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Highly sensitive spin-flop transition in antiferromagnetic van der Waals material MPS3 ( M=Ni and Mn) (2021)
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Evidence for a Magnetic-Field-Induced Ideal Type-II Weyl State in Antiferromagnetic Topological Insulator Mn ( Bi 1 − x Sb x ) 2 Te 4 (2021)
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Electronic and magnetic properties of the topological semimetal candidate NdSbTe (2020)
Collaboration Network
Top Collaborators
- Highly sensitive spin-flop transition in antiferromagnetic van der Waals material MPS3 ( M=Ni and Mn)
- Evidence for a Magnetic-Field-Induced Ideal Type-II Weyl State in Antiferromagnetic Topological Insulator Mn ( Bi 1 − x Sb x ) 2 Te 4
- Electronic and magnetic properties of the topological semimetal candidate NdSbTe
- Giant topological Hall effect in centrosymmetric tetragonal Mn2−xZnxSb
- Highly sensitive spin-flop transition in antiferromagnetic van der Waals material MPS3 ( M=Ni and Mn)
- Evidence for a Magnetic-Field-Induced Ideal Type-II Weyl State in Antiferromagnetic Topological Insulator Mn ( Bi 1 − x Sb x ) 2 Te 4
- Electronic and magnetic properties of the topological semimetal candidate NdSbTe
- Giant topological Hall effect in centrosymmetric tetragonal Mn2−xZnxSb
- Highly sensitive spin-flop transition in antiferromagnetic van der Waals material MPS3 ( M=Ni and Mn)
- Electronic and magnetic properties of the topological semimetal candidate NdSbTe
- Giant topological Hall effect in centrosymmetric tetragonal Mn2−xZnxSb
- Electronic and magnetic properties of the topological semimetal candidate NdSbTe
- Giant topological Hall effect in centrosymmetric tetragonal Mn2−xZnxSb
- Electronic and magnetic properties of the topological semimetal candidate NdSbTe
- Giant topological Hall effect in centrosymmetric tetragonal Mn2−xZnxSb
- Evidence for a Magnetic-Field-Induced Ideal Type-II Weyl State in Antiferromagnetic Topological Insulator Mn ( Bi 1 − x Sb x ) 2 Te 4
- Giant topological Hall effect in centrosymmetric tetragonal Mn2−xZnxSb
- Evidence for a Magnetic-Field-Induced Ideal Type-II Weyl State in Antiferromagnetic Topological Insulator Mn ( Bi 1 − x Sb x ) 2 Te 4
- Giant topological Hall effect in centrosymmetric tetragonal Mn2−xZnxSb
- Evidence for a Magnetic-Field-Induced Ideal Type-II Weyl State in Antiferromagnetic Topological Insulator Mn ( Bi 1 − x Sb x ) 2 Te 4
- Giant topological Hall effect in centrosymmetric tetragonal Mn2−xZnxSb
- Evidence for a Magnetic-Field-Induced Ideal Type-II Weyl State in Antiferromagnetic Topological Insulator Mn ( Bi 1 − x Sb x ) 2 Te 4
- Giant topological Hall effect in centrosymmetric tetragonal Mn2−xZnxSb
- Electronic and magnetic properties of the topological semimetal candidate NdSbTe
- Electronic and magnetic properties of the topological semimetal candidate NdSbTe
- Electronic and magnetic properties of the topological semimetal candidate NdSbTe
- Electronic and magnetic properties of the topological semimetal candidate NdSbTe
- Evidence for a Magnetic-Field-Induced Ideal Type-II Weyl State in Antiferromagnetic Topological Insulator Mn ( Bi 1 − x Sb x ) 2 Te 4
- Evidence for a Magnetic-Field-Induced Ideal Type-II Weyl State in Antiferromagnetic Topological Insulator Mn ( Bi 1 − x Sb x ) 2 Te 4
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