Stephen Mingda Wu
Affiliations: | 2013-2016 | Materials Science Diivision | Argonne National Laboratory, Lemont, IL, United States |
2016- | University of Rochester, Rochester, NY |
Website:
http://www.msd.anl.gov/division-personnel/personnel/personnel-mf/stephen-m-wuGoogle:
"Stephen Mingda Wu"Mean distance: (not calculated yet)
Parents
Sign in to add mentorRobert C. Dynes | grad student | 2012 | UC Berkeley | |
(Electronic and Magnetic Properties of Multiferroic Based Magnetoelectric Field Effect Devices.) | ||||
Anand Bhattacharya | post-doc | 2013-2016 | Argonne National Laboratory | |
(Faculty, University of Rochester) |
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Publications
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Hou W, Azizimanesh A, Sewaket A, et al. (2019) Strain-based room-temperature non-volatile MoTe ferroelectric phase change transistor. Nature Nanotechnology |
Liu C, Wu SM, Pearson JE, et al. (2018) Probing short-range magnetic order in a geometrically frustrated magnet by means of the spin Seebeck effect Physical Review B. 98 |
Hoffman JD, Wu SM, Kirby BJ, et al. (2018) Tunable Noncollinear Antiferromagnetic Resistive Memory through Oxide Superlattice Design Physical Review Applied. 9: 44041 |
Wu SM, Luican-Mayer A, Bhattacharya A. (2017) Nanoscale measurement of Nernst effect in two-dimensional charge density wave material 1T-TaS2 Applied Physics Letters. 111: 223109 |
Wu SM, Zhang W, Kc A, et al. (2016) Antiferromagnetic Spin Seebeck Effect. Physical Review Letters. 116: 097204 |
Hwang C, Cybart SA, Shin SJ, et al. (2016) Magnetic effects in sulfur-decorated graphene. Scientific Reports. 6: 21460 |
Wu SM, Pearson JE, Bhattacharya A. (2015) Paramagnetic spin seebeck effect. Physical Review Letters. 114: 186602 |
Wu SM, Fradin FY, Hoffman J, et al. (2015) Spin Seebeck devices using local on-chip heating Journal of Applied Physics. 117 |
Jungfleisch MB, Zhang W, Jiang W, et al. (2015) Spin waves in micro-structured yttrium iron garnet nanometer-thick films Journal of Applied Physics. 117 |
Wu SM, Hoffman J, Pearson JE, et al. (2014) Unambiguous separation of the inverse spin Hall and anomalous Nernst effects within a ferromagnetic metal using the spin Seebeck effect Applied Physics Letters. 105 |