Jimmy L. Davidson

Affiliations: 
Vanderbilt University, Nashville, TN 
Area:
Materials Science Engineering, Electronics and Electrical Engineering
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"Jimmy Davidson"
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Publications

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Krzyżanowska H, Paxton WF, Yilmaz M, et al. (2018) Low temperature diamond growth arising from ultrafast pulsed-laser pretreatment Carbon. 131: 120-126
Paxton WF, Ravipati S, Brooks MM, et al. (2017) Thermionic Emission from Diamond Films in Molecular Hydrogen Environments Frontiers in Mechanical Engineering. 3
Paxton WF, Brooks MM, Howell M, et al. (2014) Role of deuterium desorption kinetics on the thermionic emission properties of polycrystalline diamond films with respect to kinetic isotope effects Journal of Applied Physics. 115
Musho TD, Paxton WF, Davidson JL, et al. (2013) Quantum simulation of thermionic emission from diamond films Journal of Vacuum Science and Technology B:Nanotechnology and Microelectronics. 31
Paxton WF, Howell M, Kang WP, et al. (2012) Influence of hydrogen on the thermionic electron emission from nitrogen-incorporated polycrystalline diamond films Journal of Vacuum Science and Technology B:Nanotechnology and Microelectronics. 30
Wisitsora-At A, Hsu SH, Kang WP, et al. (2012) Advanced nanodiamond emitter with pyramidal tip-on-pole structure for emission self-regulation Journal of Vacuum Science and Technology B:Nanotechnology and Microelectronics. 30
Ghosh N, Kang WP, Davidson JL, et al. (2012) Effect of ballast-resistor and field-screening on electron-emission from nanodiamond emitters fabricated on micropatterned silicon pillar arrays Journal of Vacuum Science and Technology B:Nanotechnology and Microelectronics. 30
Paxton WF, Steigerwald A, Howell M, et al. (2012) The effect of hydrogen desorption kinetics on thermionic emission from polycrystalline chemical vapor deposited diamond Applied Physics Letters. 101
Wade TC, Coffey DW, Ghosh N, et al. (2012) Nanostructure TEM analysis of diamond cold cathode field emitters Diamond and Related Materials. 22: 29-32
Paxton WF, Wade T, Howell M, et al. (2012) Thermionic emission characterization of boron-doped microcrystalline diamond films at elevated temperatures Physica Status Solidi (a) Applications and Materials Science. 209: 1993-1995
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