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Original Articles

A new comparison of photoluminescence in crystalline and amorphous arsenic triselenide (As2Se3)

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Pages 99-106 | Received 02 Jun 1982, Accepted 25 Aug 1982, Published online: 20 Aug 2006

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Read on this site (4)

G.J. Adriaenssens. (1990) Distribution of gap states in a-As2Se3 . Philosophical Magazine B 62:1, pages 79-87.
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I.G. Austin, W.A. Jackson, T.M. Searle, P.K. Bhat & R.A. Gibson. (1985) Photoluminescence properties of a-SiNx: H alloys. Philosophical Magazine B 52:3, pages 271-288.
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John Robertson. (1983) Electronic structure of amorphous semiconductors. Advances in Physics 32:3, pages 361-452.
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Articles from other publishers (23)

S.Q. Asadullayeva, G.M. Fatullayeva & N.A. Ismayilova. (2021) Influence of rare earth ions on the emission properties of chalcogenide glass. Solid State Communications 339, pages 114484.
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Chawki Awada, Goodfriend M. Whyte, Peter O. Offor, Favour U. Whyte, Mohammed Benali Kanoun, Souraya Goumri-Said, Adil Alshoaibi, Azubike B. C. Ekwealor, Malik Maaza & Fabian I. Ezema. (2020) Synthesis and Studies of Electro-Deposited Yttrium Arsenic Selenide Nanofilms for Opto-Electronic Applications. Nanomaterials 10:8, pages 1557.
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. 2014. Light-Induced Defects in Semiconductors. Light-Induced Defects in Semiconductors 155 172 .
Keiji Tanaka. (2013) Excitation‐energy‐dependent photoluminescence in glassy As–S and crystalline As 2 S 3 . physica status solidi (b) 250:5, pages 988-993.
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Stephen R. Elliott. 2006. Materials Science and Technology. Materials Science and Technology.
R.A. Sá Ferreira, A.L. Ferreira & L.D. Carlos. (2006) Modeling of the emission red-shift in organic–inorganic di-ureasil hybrids. Journal of Non-Crystalline Solids 352:9-20, pages 1225-1229.
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R. A. Sá Ferreira, A. L. Ferreira & L. D. Carlos. (2006) Modeling the emission red-shift in amorphous semiconductors and in organic-inorganic hybrids using extended multiple trapping. The European Physical Journal B - Condensed Matter and Complex Systems 50:3, pages 371-378.
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M L Benkhedir, M Brinza & G J Adriaenssens. (2004) Electronic density of states in amorphous selenium. Journal of Physics: Condensed Matter 16:44, pages S5253-S5264.
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A. M. Andriesh. (1998) Chalcogenide glasses in optoelectronics. Semiconductors 32:8, pages 867-872.
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D Wolverson. (1990) Steady-state photoluminescence of the P-rich phosphorus selenide glasses. Journal of Physics: Condensed Matter 2:24, pages 5455-5464.
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Mihoko Yoshida & Kazuo Morigaki. (1989) Triplet Exciton States in a-Si:H and Its Alloys as Elucidated by Optically Detected Magnetic Resonance Measurements. Journal of the Physical Society of Japan 58:9, pages 3371-3382.
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D. Wolverson & R.T. Phillips. (1989) Time-resolved photoluminescence in amorphous P2Se. Solid State Communications 69:2, pages 163-166.
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M.A Kastner. (1985) Chalcogenide glasses: Solutions and problems. Journal of Non-Crystalline Solids 77-78, pages 1173-1182.
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G Fasol. (1985) Time-resolved luminescence study of amorphous phosphorus: temperature and excitation energy dependences. Journal of Physics C: Solid State Physics 18:8, pages 1729-1741.
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S.A Dembovsky & E.A Chechetkina. (1985) Model for photostructural changes in chalcogenide glassy semiconductors. Materials Research Bulletin 20:3, pages 321-328.
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Guy J. Adriaenssens. (2011) Defect Levels in the Gap of Arsenic Selenide Glasses. MRS Proceedings 61.
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B. C. Cavenett. 1985. Physics of Disordered Materials. Physics of Disordered Materials 605 616 .
B. C. Cavenett, S. P. Depinna, J. Orenstein & M. L. Theye. 1984. Coherence and Energy Transfer in Glasses. Coherence and Energy Transfer in Glasses 337 360 .
B.C. Cavenett. (1983) Triplet exciton recombination in amorphous semiconductors. Journal of Non-Crystalline Solids 59-60, pages 125-132.
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B.T. Kolomiets. (1983) State and prospects of investigations of chalcogenide vitreous semiconductors. Journal of Non-Crystalline Solids 59-60, pages 973-981.
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F. Boulitrop & D. J. Dunstan. (1983) Phonon interactions in the tail states of -Si:H . Physical Review B 28:10, pages 5923-5929.
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