Physical Review B, volume 25, issue 8, pages 5257-5262
Model for the temperature dependence of photoluminescence ina -Si:H and related materials
Publication type: Journal Article
Publication date: 1982-04-15
Journal:
Physical Review B
Quartile SCImago
Q1
Quartile WOS
Q2
Impact factor: 3.7
ISSN: 24699950, 24699969, 10980121, 1550235X
Abstract
We develop a model which interprets the temperature dependence of the intensity of the photoluminescence peak near 1.4 eV observed in $a$-Si:H and related materials in terms of a distribution of activation energies for nonradiative recombination. We find that the width and energy position of the maximum of the distribution correlates well with the spectral width of the luminescence and the activation energy for the drift mobility of photoproduced carriers. This correlation holds for sputtered and glow discharge $a$-Si:H, and $a$-Si:O, $a$-Si:H:O, $a$-Si:H:F, and $a\ensuremath{-}{\mathrm{Si}}_{1\ensuremath{-}x}{\mathrm{Ge}}_{x}$:H. Consistent differences between the distributions for sputtered and glow discharge $a$-Si:H, and between $a$-Si:H and $a$-Si:H:O are obtained. We conclude that changes in the luminescence spectral width and temperature-quenching behavior among these materials reflect changes in the distribution of localized states below the conduction-band edge.
Top-30
Citations by journals
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4
6
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12
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Physical Review B
11 publications, 31.43%
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Journal of Non-Crystalline Solids
5 publications, 14.29%
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Journal of Applied Physics
3 publications, 8.57%
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Applied Physics Letters
3 publications, 8.57%
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Journal of Luminescence
2 publications, 5.71%
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Physical Review Letters
1 publication, 2.86%
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Solid State Communications
1 publication, 2.86%
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Applied Physics B: Lasers and Optics
1 publication, 2.86%
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IEEE Journal of Quantum Electronics
1 publication, 2.86%
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Journal of Physics Condensed Matter
1 publication, 2.86%
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Materials Research Bulletin
1 publication, 2.86%
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Glass Physics and Chemistry
1 publication, 2.86%
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Advances in Physics
1 publication, 2.86%
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Russian Chemical Reviews
1 publication, 2.86%
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2
4
6
8
10
12
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Citations by publishers
2
4
6
8
10
12
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American Physical Society (APS)
12 publications, 34.29%
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Elsevier
9 publications, 25.71%
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American Institute of Physics (AIP)
6 publications, 17.14%
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Springer Nature
1 publication, 2.86%
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IEEE
1 publication, 2.86%
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IOP Publishing
1 publication, 2.86%
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Pleiades Publishing
1 publication, 2.86%
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Taylor & Francis
1 publication, 2.86%
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Autonomous Non-profit Organization Editorial Board of the journal Uspekhi Khimii
1 publication, 2.86%
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2
4
6
8
10
12
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- We do not take into account publications without a DOI.
- Statistics recalculated only for publications connected to researchers, organizations and labs registered on the platform.
- Statistics recalculated weekly.
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Collins R., Paul W. Model for the temperature dependence of photoluminescence ina-Si:H and related materials // Physical Review B. 1982. Vol. 25. No. 8. pp. 5257-5262.
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Collins R., Paul W. Model for the temperature dependence of photoluminescence ina-Si:H and related materials // Physical Review B. 1982. Vol. 25. No. 8. pp. 5257-5262.
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TY - JOUR
DO - 10.1103/physrevb.25.5257
UR - https://doi.org/10.1103/physrevb.25.5257
TI - Model for the temperature dependence of photoluminescence ina-Si:H and related materials
T2 - Physical Review B
AU - Collins, R.W.
AU - Paul, William
PY - 1982
DA - 1982/04/15 00:00:00
PB - American Physical Society (APS)
SP - 5257-5262
IS - 8
VL - 25
SN - 2469-9950
SN - 2469-9969
SN - 1098-0121
SN - 1550-235X
ER -
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@article{1982_Collins,
author = {R.W. Collins and William Paul},
title = {Model for the temperature dependence of photoluminescence ina-Si:H and related materials},
journal = {Physical Review B},
year = {1982},
volume = {25},
publisher = {American Physical Society (APS)},
month = {apr},
url = {https://doi.org/10.1103/physrevb.25.5257},
number = {8},
pages = {5257--5262},
doi = {10.1103/physrevb.25.5257}
}
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Collins, R.W., and William Paul. “Model for the temperature dependence of photoluminescence ina-Si:H and related materials.” Physical Review B, vol. 25, no. 8, Apr. 1982, pp. 5257-5262. https://doi.org/10.1103/physrevb.25.5257.