Peter Bennett
Affiliations: | Physics | Arizona State University, Tempe, AZ, United States |
Area:
Optics Physics, NanotechnologyGoogle:
"Peter Bennett"Mean distance: (not calculated yet)
Children
Sign in to add traineeGerald J. Nivison | grad student | 2000 | Arizona State |
Zhian He | grad student | 2004 | Arizona State |
Shengde Liang | grad student | 2006 | Arizona State |
Samuel Tobler | grad student | 2011 | Arizona State |
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Publications
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Tobler SK, Bennett PA. (2015) In situ resistivity of endotaxial FeSi<inf>2</inf> nanowires on Si(110) Journal of Applied Physics. 118 |
Bennett PA, Smith DJ, He Z, et al. (2011) In situ observations of endotaxial growth of CoSi2 nanowires on Si(110) using ultrahigh vacuum transmission electron microscopy. Nanotechnology. 22: 305606 |
Hao L, Bennett PA. (2010) Analytic model for minority carrier effects in nanoscale Schottky contacts Journal of Applied Physics. 108 |
Hao L, Bennett PA. (2009) Minority carrier effects in nanoscale Schottky contacts. Nanotechnology. 20: 355201 |
Hofmann S, Sharma R, Wirth CT, et al. (2008) Ledge-flow-controlled catalyst interface dynamics during Si nanowire growth. Nature Materials. 7: 372-5 |
Hofmann S, Sharma R, Blume R, et al. (2008) Catalyst Dynamics during Carbon Nanotube and Si Nanowire CVD Microscopy and Microanalysis. 14: 206-207 |
Sutter P, Bennett PA, Flege JI, et al. (2007) Steering liquid Pt-Si nanodroplets on Si(100) by interactions with surface steps. Physical Review Letters. 99: 125504 |
Kim T, Naser B, Chamberlin RV, et al. (2007) Large hysteretic magnetoresistance of silicide nanostructures Physical Review B - Condensed Matter and Materials Physics. 76 |
Bennett PA, Chobanian J, Flege JI, et al. (2007) Surface thermomigration of nanoscale Pt-Si droplets on stepped Si(100) Physical Review B - Condensed Matter and Materials Physics. 76 |
Okino H, Matsuda I, Hobara R, et al. (2005) Resistance measurements of metallic suicide nanowires on a Si substrate with a four-tip scanning tunneling microscope E-Journal of Surface Science and Nanotechnology. 3: 362-366 |