Gary W. Pennington, Ph.D.
Affiliations: | 2003 | University of Maryland, College Park, College Park, MD |
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"Gary Pennington"Parents
Sign in to add mentorNeil Goldsman | grad student | 2003 | University of Maryland | |
(Electron transport simulations and band structure calculations of new materials for electronics: Silicon carbide and carbon nanotubes.) |
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Publications
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Pennington G, Ashman CR. (2009) Nitrogen passivation of (0001) 4H-SiC dangling bonds Materials Science Forum. 600: 469-472 |
Pennington G, Goldsman N. (2009) Simulation of electron transport in (0001) and (11 2- 0) 4H -SiC inversion layers Journal of Applied Physics. 106 |
Pennington G, Ervin MH, Wickenden AE. (2008) Sensitivity of carbon nanotube transistors to a charged dielectric coating Ieee Sensors Journal. 8: 1029-1035 |
Akturk A, Goldsman N, Pennington G, et al. (2007) Terahertz current oscillations in single-walled zigzag carbon nanotubes. Physical Review Letters. 98: 166803 |
Potbhare S, Goldsman N, Pennington G, et al. (2007) Time dependent trapping and generation-recombination of interface charges: Modeling and characterization for 4H-SiC MOSFETs Materials Science Forum. 556: 847-850 |
Pennington G, Potbhare S, Goldsman N, et al. (2007) Investigation of drain current saturation in 4H-SiC MOSFETs Materials Science Forum. 556: 811-814 |
Akturk A, Pennington G, Goldsman N, et al. (2007) Electron transport and velocity oscillations in a carbon nanotube Ieee Transactions On Nanotechnology. 6: 469-473 |
Pennington G, Potbhare S, McGarrity JM, et al. (2007) Electron transport at technologically significant stepped 4H-SiC/SiO 2 interfaces International Conference On Simulation of Semiconductor Processes and Devices, Sispad. 236-239 |
Akturk A, Pennington GW, Goldsman N, et al. (2007) Quantum electron transport in carbon nanotubes: Velocity oscillations and length dependence International Conference On Simulation of Semiconductor Processes and Devices, Sispad. 31-34 |
Finkenstadt D, Pennington G, Mehl MJ. (2007) From graphene to graphite: A general tight-binding approach for nanoribbon carrier transport Physical Review B - Condensed Matter and Materials Physics. 76 |