Andrew David Kent
Affiliations: | Physics | New York University, New York, NY, United States |
Area:
Electricity and Magnetism Physics, Condensed Matter Physics, NanotechnologyWebsite:
http://physics.as.nyu.edu/object/AndrewKent.htmlGoogle:
"Andrew David Kent"Bio:
http://www.physics.nyu.edu/kentlab/
http://web.stanford.edu/group/kgb/old_website/alumni/info.html
http://www.osti.gov/scitech/biblio/5524627
http://adsabs.harvard.edu/abs/1988PhDT........58K
https://searchworks.stanford.edu/view/1304692
DOI: 10.1016/0167-577X(87)90075-9
Mean distance: (not calculated yet)
Parents
Sign in to add mentorTheodore H. Geballe | grad student | 1988 | Stanford | |
(Superconductivity in Disordered Lanthanum-Sulfide Films.) |
Children
Sign in to add traineeLouisa Bokacheva | grad student | 2002 | NYU |
Barbaros Oezyilmaz | grad student | 2005 | NYU |
Wenyu Chen | grad student | 2008 | NYU |
Huanlong Liu | grad student | 2013 | NYU |
Pradeep Subedi | grad student | 2013 | NYU |
Daniel B. Gopman | grad student | 2014 | NYU |
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Publications
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Chen TY, Ren H, Ghazikhanian N, et al. (2024) Electrical Control of Magnetic Resonance in Phase Change Materials. Nano Letters |
Zheng XY, Channa S, Riddiford LJ, et al. (2024) Author Correction: Ultra-thin lithium aluminate spinel ferrite films with perpendicular magnetic anisotropy and low damping. Nature Communications. 15: 534 |
Del Barco E, Kent AD. (2023) A handy way to rotate chiral spins. Nature Materials. 22: 1051-1052 |
Zheng XY, Channa S, Riddiford LJ, et al. (2023) Ultra-thin lithium aluminate spinel ferrite films with perpendicular magnetic anisotropy and low damping. Nature Communications. 14: 4918 |
Ren H, Zheng XY, Channa S, et al. (2023) Hybrid spin Hall nano-oscillators based on ferromagnetic metal/ferrimagnetic insulator heterostructures. Nature Communications. 14: 1406 |
Quessab Y, Xu JW, Cogulu E, et al. (2022) Zero-Field Nucleation and Fast Motion of Skyrmions Induced by Nanosecond Current Pulses in a Ferrimagnetic Thin Film. Nano Letters |
Cogulu E, Zhang H, Statuto NN, et al. (2022) Quantifying Spin-Orbit Torques in Antiferromagnet-Heavy-Metal Heterostructures. Physical Review Letters. 128: 247204 |
Cheng Y, Cogulu E, Resnick RD, et al. (2022) Third harmonic characterization of antiferromagnetic heterostructures. Nature Communications. 13: 3659 |
Quessab Y, Xu JW, Morshed MG, et al. (2021) Interplay between Spin-Orbit Torques and Dzyaloshinskii-Moriya Interactions in Ferrimagnetic Amorphous Alloys. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). e2100481 |
Xu JW, Chen Y, Vargas NM, et al. (2021) A quantum material spintronic resonator. Scientific Reports. 11: 15082 |