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Dr. Vanderbilt is an expert in the development of methods for electronic structure calculations and the application of such methods for computational materials theory. His current research interests include the development of methods for treating insulators in finite electric fields, advancing the theory and applicability of Wannier functions, and applying Berry-phase methods to study magnetic systems. One class of applications focuses on the dielectric and piezoelectric properties of novel oxide materials, especially structural phase transitions, lattice contributions to dielectric and piezoelectric activity, and properties of interfaces and superlattices. Another research thrust is concerned with anomalous Hall conductivity, orbital magnetization, magnetoelectric couplings, and topological insulators.
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Vincent C. Morano,Jonathan Gaudet,Nicodemos Varnava,Tanya Berry,Thomas Halloran,Chris J. Lygouras,Xiaoping Wang, Christina M. Hoffman,Guangyong Xu, Jeffrey W. Lynn,Tyrel M. McQueen,David Vanderbilt,
PHYSICAL REVIEW Bno. 1 (2024)
Proceedings of the National Academy of Sciences of the United States of Americano. 10 (2024): e2318443121-e2318443121
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICAno. 5 (2024): e2312571121-e2312571121
arXiv (Cornell University) (2023)
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Physical reviewno. 18 (2023)
Physical Review Lettersno. 8 (2023)
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Vincent C. Morano,Jonathan Gaudet,Nicodemos Varnava,Tanya Berry,Thomas Halloran,Chris J. Lygouras,Xiaoping Wang, Christina M. Hoffman,Guangyong Xu, Jeffrey W. Lynn,Tyrel M. McQueen,David Vanderbilt,
arXiv (Cornell University) (2023)
Physical Review Xno. 1 (2023): 011041
ACTA MATERIALIA (2023): 119191
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