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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-wu
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"Stephen Mingda Wu"
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Parents

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Robert 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
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