N. Garry Tarr
Affiliations: | Carleton University, Ottawa, Canada |
Area:
Electronics and Electrical EngineeringWebsite:
http://www.doe.carleton.ca/~ngt/Google:
""Nicholas Garry Tarr Carleton""Bio:
https://carleton.ca/doe/people/garry-tarr/
http://hdl.handle.net/2429/23189
Parents
Sign in to add mentorDavid L. Pulfrey | grad student | 1981 | UBC | |
(Metal-insulator-semiconductor tunnel junctions and their application to photovoltaic energy conversion) |
Children
Sign in to add traineeNeric H. Fong | grad student | 2002 | Carleton University |
Ryan P. MacDonald | grad student | 2002 | Carleton University |
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Publications
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Demtchenko S, Tarr NG, McGarry S. (2017) Effect of PEDOT band structure on conductive polymer-insulator-silicon junctions Journal of Applied Physics. 122: 65502 |
Arsalan M, Shamim A, Shams M, et al. (2012) Ultra Low Power CMOS-Based Sensor for On-Body Radiation Dose Measurements Ieee Journal On Emerging and Selected Topics in Circuits and Systems. 2: 34-41 |
Logan DF, Knights AP, Jessop PE, et al. (2011) Defect-enhanced photo-detection at 1550 nm in a silicon waveguide formed via LOCOS Semiconductor Science and Technology. 26 |
Chyurlia P, Tang H, Semond F, et al. (2011) GaN HEMT and MOS monolithic integration on silicon substrates Physica Status Solidi (C) Current Topics in Solid State Physics. 8: 2210-2212 |
Chyurlia PN, Semond F, Lester T, et al. (2010) Monolithic integration of AlGaN/GaN HFET with MOS on silicon 〈111〉 substrates Electronics Letters. 46: 240-242 |
Jessop PE, Rowe LK, McFaul SM, et al. (2009) Study of the monolithic integration of sub-bandgap detection, signal amplification and optical attenuation on a silicon photonic chip Journal of Materials Science: Materials in Electronics. 20: S456-S459 |
Chyurlia P, Semond F, Lester T, et al. (2009) Windowed growth of AlGaN/GaN heterostructures on Silicon 〈111〉 substrates for future MOS integration Physica Status Solidi (a) Applications and Materials Science. 206: 371-374 |
Celo D, Vandusen R, Smy T, et al. (2008) Low temperature plasma etching for Si3N4 waveguide applications Journal of Vacuum Science and Technology. 26: 253-258 |
Rowe LK, Elsey M, Tarr NG, et al. (2007) CMOS-compatible optical rib waveguides defined by local oxidation of silicon Electronics Letters. 43: 392-393 |
Jiang W, Landheer D, Lopinski G, et al. (2006) Post-processing of Commercial CMOS Chips for the Fabrication of DNA Bio-FET Sensor Arrays Mrs Proceedings. 951 |