Sara J. Callori, Ph.D.

Affiliations: 
2013 Physics Stony Brook University, Stony Brook, NY, United States 
Area:
Condensed Matter experimental.
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"Sara Callori"
Mean distance: 5420.8
 

Parents

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Matthew Dawber grad student 2013 SUNY Stony Brook
 (Lead Titanate Based Ferroelectric Superlattices with Conventional and Novel Dielectric Components.)
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Publications

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Causer GL, Cortie DL, Callori SJ, et al. (2020) The magnetic interfacial properties of an exchange biased nanocrystalline Ni80Fe20/α-Fe2O3 bilayer studied by polarized neutron reflectometry and Monte Carlo simulation Japanese Journal of Applied Physics. 59
Keunecke M, Lyzwa F, Schwarzbach D, et al. (2020) High‐TC Interfacial Ferromagnetism in SrMnO3/LaMnO3 Superlattices Advanced Functional Materials. 30: 1808270
Kostylev M, Causer GL, Lambert C, et al. (2018) In situferromagnetic resonance capability on a polarized neutron reflectometry beamline Journal of Applied Crystallography. 51: 9-16
Costa PS, Guzman F, Cousins K, et al. (2018) Fabricating high-quality ultra-thin croconic acid film using electric field guidance Applied Surface Science. 427: 541-546
Zhang Q, Dufresne EM, Chen P, et al. (2017) Thermal Fluctuations of Ferroelectric Nanodomains in a Ferroelectric-Dielectric PbTiO_{3}/SrTiO_{3} Superlattice. Physical Review Letters. 118: 097601
Cortie DL, Khaydukov Y, Keller T, et al. (2017) Enhanced magnetization of cobalt defect clusters embedded in TiO2-δ films. Acs Applied Materials & Interfaces
Bertinshaw J, Maran R, Callori SJ, et al. (2016) Direct evidence for the spin cycloid in strained nanoscale bismuth ferrite thin films. Nature Communications. 7: 12664
Bein B, Hsing HC, Callori SJ, et al. (2015) In situ X-ray diffraction and the evolution of polarization during the growth of ferroelectric superlattices. Nature Communications. 6: 10136
Callori SJ, Hu S, Bertinshaw J, et al. (2015) Strain-induced magnetic phase transition in SrCoO3-δ thin films Physical Review B - Condensed Matter and Materials Physics. 91
Hu S, Yue Z, Lim JS, et al. (2015) Growth and Properties of Fully Strained SrCoOx (x ≈ 2.8) Thin Films on DyScO3 Advanced Materials Interfaces. 2
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