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Luminescence line-shape analysis of the electron-hole plasma in direct-gap Ga-Al-As: Random-phase-approximation approach
Physical Review B
◽
10.1103/physrevb.30.821
◽
1984
◽
Vol 30
(2)
◽
pp. 821-831
◽
Cited By ~ 37
Author(s):
A. Selloni
◽
S. Modesti
◽
M. Capizzi
Keyword(s):
Shape Analysis
◽
Line Shape
◽
Random Phase Approximation
◽
Random Phase
◽
Phase Approximation
◽
Luminescence Line
◽
Electron Hole
◽
Approximation Approach
◽
Line Shape Analysis
◽
Electron Hole Plasma
Download Full-text
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Cited By
References
Line shape analysis of electron–hole plasma electroluminescence in fully strained SiGe epitaxial layers
Journal of Applied Physics
◽
10.1063/1.1606513
◽
2003
◽
Vol 94
(7)
◽
pp. 4400-4408
◽
Cited By ~ 9
Author(s):
T. Stoica
◽
L. Vescan
Keyword(s):
Shape Analysis
◽
Line Shape
◽
Epitaxial Layers
◽
Electron Hole
◽
Hole Plasma
◽
Line Shape Analysis
◽
Electron Hole Plasma
◽
Strained Sige
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Phase diagram of charged dumbbells: A random phase approximation approach
Physical Review E
◽
10.1103/physreve.70.021504
◽
2004
◽
Vol 70
(2)
◽
Cited By ~ 4
Author(s):
Alexander Kudlay
◽
Alexander V. Ermoshkin
◽
Monica Olvera de la Cruz
Keyword(s):
Phase Diagram
◽
Random Phase Approximation
◽
Random Phase
◽
Phase Approximation
◽
Approximation Approach
Download Full-text
Isoscalar pairing interaction for the quasiparticle random-phase approximation approach to double- β and β decays
Physical Review C
◽
10.1103/physrevc.100.034325
◽
2019
◽
Vol 100
(3)
◽
Author(s):
J. Terasaki
◽
Y. Iwata
Keyword(s):
Random Phase Approximation
◽
Random Phase
◽
Phase Approximation
◽
Pairing Interaction
◽
Quasiparticle Random Phase Approximation
◽
Approximation Approach
Download Full-text
Logarithmic normal distribution of particle size from a luminescence line-shape analysis in porous silicon
Applied Physics Letters
◽
10.1063/1.119816
◽
1997
◽
Vol 71
(5)
◽
pp. 644-646
◽
Cited By ~ 47
Author(s):
H. Yorikawa
◽
S. Muramatsu
Keyword(s):
Particle Size
◽
Porous Silicon
◽
Normal Distribution
◽
Shape Analysis
◽
Line Shape
◽
Luminescence Line
◽
Line Shape Analysis
Download Full-text
Random-phase-approximation approach to optical and magnetic excitations in the two-dimensional multiband Hubbard model
Physical Review B
◽
10.1103/physrevb.45.5530
◽
1992
◽
Vol 45
(10)
◽
pp. 5530-5534
◽
Cited By ~ 15
Author(s):
K. Yonemitsu
◽
A. R. Bishop
Keyword(s):
Hubbard Model
◽
Random Phase Approximation
◽
Random Phase
◽
Two Dimensional
◽
Phase Approximation
◽
Magnetic Excitations
◽
Approximation Approach
Download Full-text
Random-phase approximation approach to rotational symmetry restoration in a three-level Lipkin model
Physical Review C
◽
10.1103/physrevc.61.024307
◽
2000
◽
Vol 61
(2)
◽
Cited By ~ 27
Author(s):
K. Hagino
◽
G. F. Bertsch
Keyword(s):
Random Phase Approximation
◽
Rotational Symmetry
◽
Random Phase
◽
Phase Approximation
◽
Approximation Approach
◽
Lipkin Model
Download Full-text
Random-phase-approximation approach to phonon spectra in doped and undoped halogen-bridged transition-metal compounds
Physical Review B
◽
10.1103/physrevb.45.5282
◽
1992
◽
Vol 45
(10)
◽
pp. 5282-5292
◽
Cited By ~ 28
Author(s):
I. Batistić
◽
A. R. Bishop
Keyword(s):
Transition Metal
◽
Random Phase Approximation
◽
Random Phase
◽
Transition Metal Compounds
◽
Phase Approximation
◽
Metal Compounds
◽
Approximation Approach
◽
Phonon Spectra
Download Full-text
Continuum random phase approximation approach to charged-current neutrino-nucleus scattering
Physical Review C
◽
10.1103/physrevc.65.025501
◽
2002
◽
Vol 65
(2)
◽
Cited By ~ 64
Author(s):
N. Jachowicz
◽
K. Heyde
◽
J. Ryckebusch
◽
S. Rombouts
Keyword(s):
Random Phase Approximation
◽
Random Phase
◽
Charged Current
◽
Phase Approximation
◽
Approximation Approach
◽
Nucleus Scattering
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Examination of the consistency of the quasiparticle random-phase approximation approach to double- β decay of Ca48
Physical Review C
◽
10.1103/physrevc.97.034304
◽
2018
◽
Vol 97
(3)
◽
Cited By ~ 6
Author(s):
J. Terasaki
Keyword(s):
Random Phase Approximation
◽
Random Phase
◽
Phase Approximation
◽
Β Decay
◽
Quasiparticle Random Phase Approximation
◽
Approximation Approach
◽
Double Β Decay
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Surface Electronic Response in the Random Phase Approximation and Infinite Barrier Model: Surface Plasmons, Electron-Hole Pairs and the Interaction With External Particles
Physica Scripta
◽
10.1088/0031-8949/30/6/011
◽
1984
◽
Vol 30
(6)
◽
pp. 431-443
◽
Cited By ~ 42
Author(s):
Z Penzar
◽
M Sunjic
Keyword(s):
Surface Plasmons
◽
Random Phase Approximation
◽
Random Phase
◽
Phase Approximation
◽
Model Surface
◽
Electron Hole
◽
Electronic Response
◽
Infinite Barrier
◽
Barrier Model
Download Full-text
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