Michael D. Biegalski, Ph.D.
Affiliations: | 2006 | Pennsylvania State University, State College, PA, United States |
Area:
Materials Science Engineering, Condensed Matter PhysicsGoogle:
"Michael Biegalski"Parents
Sign in to add mentorSusan E. Trolier-McKinstry | grad student | 2006 | Penn State | |
(Epitaxially strained strontium titanate.) |
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Publications
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Moog M, Singamaneni SR, Prater JT, et al. (2018) Magneto-optical properties of BaTiO3/La0.76Sr0.24MnO3/BaTiO3 heterostructures Aip Advances. 8: 055820 |
Jang JH, Kim YM, He Q, et al. (2017) In-Situ Observation of Oxygen Vacancy Dynamics and Ordering in the Epitaxial LaCoO3 System. Acs Nano |
Chopdekar RV, Li B, Wynn TA, et al. (2017) Nanostructured complex oxides as a route towards thermal behavior in artificial spin ice systems Physical Review Materials. 1 |
Jia Y, Chopdekar RV, Shafer P, et al. (2017) Antiferromagnetic structure of exchange-coupled La0.7Sr0.3FeO3 thin films studied using angle-dependent x-ray absorption spectroscopy Physical Review B. 96 |
Herklotz A, Wong AT, Meyer T, et al. (2016) Controlling Octahedral Rotations in a Perovskite via Strain Doping. Scientific Reports. 6: 26491 |
Bennett SP, Wong AT, Glavic A, et al. (2016) Giant Controllable Magnetization Changes Induced by Structural Phase Transitions in a Metamagnetic Artificial Multiferroic. Scientific Reports. 6: 22708 |
Liu Z, Biegalski MD, Hsu SL, et al. (2016) Ferromagnetism: Epitaxial Growth of Intermetallic MnPt Films on Oxides and Large Exchange Bias (Adv. Mater. 1/2016). Advanced Materials (Deerfield Beach, Fla.). 28: 204 |
Jia Y, Chopdekar RV, Arenholz E, et al. (2016) Thickness dependence of exchange coupling in (111)-oriented perovskite oxide superlattices Physical Review B - Condensed Matter and Materials Physics. 93 |
Tselev A, Vasudevan RK, Gianfrancesco AG, et al. (2016) Growth mode transition in complex oxide heteroepitaxy: Atomically resolved studies Crystal Growth and Design. 16: 2708-2716 |
Haislmaier RC, Grimley ED, Biegalski MD, et al. (2016) Unleashing Strain Induced Ferroelectricity in Complex Oxide Thin Films via Precise Stoichiometry Control Advanced Functional Materials |