Brian J. Kirby
Affiliations: | National Institute of Standards and Technology, Gaithersburg, MD, United States |
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Parents
Sign in to add mentorJames J. Rhyne | grad student | 2004 | University of Missouri - Columbia (Physics Tree) | |
(Annealing-dependent phenomena in gallium manganese arsenide.) | ||||
Michael R. Fitzsimmons | post-doc | 2004-2006 | LANL |
Collaborators
Sign in to add collaboratorBrian B. Maranville | collaborator | NIST (E-Tree) | |
Julie Borchers | collaborator | 2004- | NIST |
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Publications
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Arndt ND, Hershkovitz E, Shah L, et al. (2024) Reduction-Induced Magnetic Behavior in LaFeO Thin Films. Materials (Basel, Switzerland). 17 |
Stojak Repa K, Kirby BJ, Miller CW. (2023) Tunable coupling in magnetic thin film heterostructures with a magnetic phase transition. Scientific Reports. 13: 9538 |
Dc M, Shao DF, Hou VD, et al. (2023) Observation of anti-damping spin-orbit torques generated by in-plane and out-of-plane spin polarizations in MnPd. Nature Materials |
Chaturvedi V, Ghosh S, Gautreau D, et al. (2022) Room-temperature valence transition in a strain-tuned perovskite oxide. Nature Communications. 13: 7774 |
Murray PD, Jensen CJ, Quintana A, et al. (2021) Electrically Enhanced Exchange Bias via Solid-State Magneto-ionics. Acs Applied Materials & Interfaces |
Fallarino L, Kirby BJ, Fullerton EE. (2021) Graded magnetic materials Journal of Physics D: Applied Physics. 54: 303002 |
Porter Z, Need RF, Ahadi K, et al. (2020) Correlating magnetic structure and magnetotransport in semimetal thin films of Eu Sm TiO. Physical Review Materials. 4 |
Li S, Zhang Q, Lin S, et al. (2020) Strong Ferromagnetism Achieved via Breathing Lattices in Atomically Thin Cobaltites. Advanced Materials (Deerfield Beach, Fla.). e2001324 |
Cui Z, Grutter AJ, Zhou H, et al. (2020) Correlation-driven eightfold magnetic anisotropy in a two-dimensional oxide monolayer. Science Advances. 6: eaay0114 |
Sarkar A, Waschk M, Barthel J, et al. (2020) Impact of growth kinetics on the interface morphology and magnetization in La1/3Sr2/3FeO3/La2/3Sr1/3MnO3 heterostructures. Journal of Physics. Condensed Matter : An Institute of Physics Journal |