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Does the low hole transport mass in 〈110〉 and 〈111〉 Si nanowires lead to mobility enhancements at high field and stress: A self-consistent tight-binding study
Journal of Applied Physics
◽
10.1063/1.4729806
◽
2012
◽
Vol 111
(12)
◽
pp. 123718
◽
Cited By ~ 9
Author(s):
R. Kotlyar
◽
T. D. Linton
◽
R. Rios
◽
M. D. Giles
◽
S. M. Cea
◽
...
Keyword(s):
High Field
◽
Tight Binding
◽
Hole Transport
◽
Binding Study
◽
Si Nanowires
◽
Self Consistent
Download Full-text
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Self-consistent tight-binding study of low-index titanium surfaces
Physical Review B
◽
10.1103/physrevb.72.035405
◽
2005
◽
Vol 72
(3)
◽
Cited By ~ 8
Author(s):
Serkan Erdin
◽
You Lin
◽
J. Woods Halley
Keyword(s):
Tight Binding
◽
Binding Study
◽
Self Consistent
◽
Titanium Surfaces
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Tuning the electronic properties of gated multilayer phosphorene: A self-consistent tight-binding study
Physical Review B
◽
10.1103/physrevb.97.155424
◽
2018
◽
Vol 97
(15)
◽
Cited By ~ 18
Author(s):
L. L. Li
◽
B. Partoens
◽
F. M. Peeters
Keyword(s):
Electronic Properties
◽
Tight Binding
◽
Binding Study
◽
Self Consistent
Download Full-text
The self-consistent charge density functional tight binding study on wurtzite nanowire
Computational Materials Science
◽
10.1016/j.commatsci.2009.12.031
◽
2010
◽
Vol 49
(4)
◽
pp. S161-S169
◽
Cited By ~ 14
Author(s):
Vu Ngoc Tuoc
Keyword(s):
Charge Density
◽
Density Functional
◽
Tight Binding
◽
The Self
◽
Binding Study
◽
Self Consistent
Download Full-text
Self-Consistent Charge Density Functional Tight-Binding Study of Poly(3,4-ethylenedioxythiophene): Poly(styrenesulfonate) Ammonia Gas Sensor
Nanoscale Research Letters
◽
10.1186/s11671-017-1878-2
◽
2017
◽
Vol 12
(1)
◽
Cited By ~ 14
Author(s):
Ampaiwan Marutaphan
◽
Yotsarayuth Seekaew
◽
Chatchawal Wongchoosuk
Keyword(s):
Charge Density
◽
Gas Sensor
◽
Density Functional
◽
Tight Binding
◽
Binding Study
◽
Ammonia Gas
◽
Self Consistent
Download Full-text
Dependence of Injection Velocity and Capacitance of Si Nanowires on Diameter, Orientation, and Gate Bias: An Atomistic Tight-Binding Study
10.1109/sispad.2009.5290245
◽
2009
◽
Cited By ~ 1
Author(s):
Neophytos Neophytou
◽
Hans Kosina
◽
Siegfried Selberherr
◽
Gerhard Klimeck
Keyword(s):
Tight Binding
◽
Binding Study
◽
Injection Velocity
◽
Gate Bias
◽
Si Nanowires
Download Full-text
Insight into phonon scattering in Si nanowires through high-field hole transport: Impacts of boundary condition and comparison with bulk phonon approximation
Journal of Physics Conference Series
◽
10.1088/1742-6596/864/1/012046
◽
2017
◽
Vol 864
◽
pp. 012046
◽
Cited By ~ 2
Author(s):
H Tanaka
◽
J Suda
◽
T Kimoto
Keyword(s):
Boundary Condition
◽
High Field
◽
Phonon Scattering
◽
Hole Transport
◽
Si Nanowires
◽
Bulk Phonon
◽
Insight Into
Download Full-text
Electronic structure of neutral and charged point defects. A charge self-consistent empirical tight-binding study
physica status solidi (b)
◽
10.1002/pssb.2221340131
◽
1986
◽
Vol 134
(1)
◽
pp. 257-265
◽
Cited By ~ 7
Author(s):
R. Strehlow
◽
W. Kühn
◽
M. Hanke
Keyword(s):
Electronic Structure
◽
Point Defects
◽
Tight Binding
◽
Binding Study
◽
Self Consistent
◽
A Charge
◽
Charged Point
Download Full-text
Self-consistent tight binding model adapted for hydrocarbon systems
Molecular Simulation
◽
10.1080/08927020500044988
◽
2005
◽
Vol 31
(8)
◽
pp. 585-595
◽
Cited By ~ 4
Author(s):
D. A. Areshkin
◽
O. A. Shenderova
◽
J. D. Schall
◽
D. W. Brenner
Keyword(s):
Tight Binding
◽
Tight Binding Model
◽
Binding Model
◽
Self Consistent
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Self-consistent tight-binding model of B and N doping in graphene
Physical Review B
◽
10.1103/physrevb.87.155433
◽
2013
◽
Vol 87
(15)
◽
Cited By ~ 16
Author(s):
Thomas Garm Pedersen
◽
Jesper Goor Pedersen
Keyword(s):
Tight Binding
◽
Tight Binding Model
◽
Binding Model
◽
Self Consistent
◽
N Doping
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Optical TCAD on the Net: A tight-binding study of inter-band light transitions in self-assembled InAs/GaAs quantum dot photodetectors
Mathematical and Computer Modelling
◽
10.1016/j.mcm.2012.11.024
◽
2013
◽
Vol 58
(1-2)
◽
pp. 288-299
◽
Cited By ~ 4
Author(s):
Hoon Ryu
◽
Dukyun Nam
◽
Bu-Young Ahn
◽
JongSuk Ruth Lee
◽
Kumwon Cho
◽
...
Keyword(s):
Quantum Dot
◽
Tight Binding
◽
Binding Study
◽
Self Assembled
◽
Gaas Quantum Dot
Download Full-text
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