Optical characteristics of 1.55 μm GaInNAs multi-quantum wells

We report the optical characterization of high-quality 1.55 mum GaxIn1-xNyAs1-y multiquantum wells (MQWs), grown on GaAs with Ga(In)N0.01As spacer layers. The transitions between the quantized QW states of the electrons and holes have been identified using photoluminescence excitation spectroscopy....

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Main Authors: Sun, Handong, Calvez, Stephane, Dawson, M. D., Qiu, Y. N., Rorison, J. M., Clark, Antony H., Liu, H. Y., Hopkinson, M.
Other Authors: School of Physical and Mathematical Sciences
Format: Article
Language:English
Published: 2009
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Online Access:https://hdl.handle.net/10356/90379
http://hdl.handle.net/10220/6060
http://sfxna09.hosted.exlibrisgroup.com:3410/ntu/sfxlcl3?sid=metalib:ELSEVIER_SCOPUS&id=doi:&genre=&isbn=&issn=&date=2004&volume=85&issue=18&spage=4013&epage=4015&aulast=Sun&aufirst=%20H%20D&auinit=&title=Applied%20Physics%20Letters&atitle=Optical%20characteristics%20of%201%2E55%20%CE%BCm%20GaInNAs%20multiple%20quantum%20wells&sici.
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spelling sg-ntu-dr.10356-903792023-02-28T19:29:26Z Optical characteristics of 1.55 μm GaInNAs multi-quantum wells Sun, Handong Calvez, Stephane Dawson, M. D. Qiu, Y. N. Rorison, J. M. Clark, Antony H. Liu, H. Y. Hopkinson, M. School of Physical and Mathematical Sciences DRNTU::Science::Physics::Optics and light We report the optical characterization of high-quality 1.55 mum GaxIn1-xNyAs1-y multiquantum wells (MQWs), grown on GaAs with Ga(In)N0.01As spacer layers. The transitions between the quantized QW states of the electrons and holes have been identified using photoluminescence excitation spectroscopy. Their energies are consistent with theoretical fitting based on the band anticrossing model. It is also confirmed by detailed spectroscopic measurements that the addition of even a small amount of In to GaN0.01As barriers remarkably improves the optical characteristics of the QWs. The results imply that although strain-compensated GaInNAs MQWs provide a feasible approach to realizing 1.55 mum optical emission, the relative lattice mismatch between the wells and barriers is critical to the optical quality of the related QWs. Published version 2009-08-12T03:40:12Z 2019-12-06T17:46:46Z 2009-08-12T03:40:12Z 2019-12-06T17:46:46Z 2004 2004 Journal Article Sun, H. D., Clark, A. H., Liu, H. Y., Hopkinson, M., Calvez, S., Dawson, M. D., et al. (2004). Optical characteristics of 1.55 mm GaInNAs multi-quantum wells. Applied Physics Letters, 85(18), 4013-4015. 0003-6951 https://hdl.handle.net/10356/90379 http://hdl.handle.net/10220/6060 http://sfxna09.hosted.exlibrisgroup.com:3410/ntu/sfxlcl3?sid=metalib:ELSEVIER_SCOPUS&id=doi:&genre=&isbn=&issn=&date=2004&volume=85&issue=18&spage=4013&epage=4015&aulast=Sun&aufirst=%20H%20D&auinit=&title=Applied%20Physics%20Letters&atitle=Optical%20characteristics%20of%201%2E55%20%CE%BCm%20GaInNAs%20multiple%20quantum%20wells&sici. 10.1063/1.1812371 en Applied Physics Letters. Applied Physics Letters © copyright 2004 American Institute of Physics. The journal's website is located at http://apl.aip.org/. 3 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Science::Physics::Optics and light
spellingShingle DRNTU::Science::Physics::Optics and light
Sun, Handong
Calvez, Stephane
Dawson, M. D.
Qiu, Y. N.
Rorison, J. M.
Clark, Antony H.
Liu, H. Y.
Hopkinson, M.
Optical characteristics of 1.55 μm GaInNAs multi-quantum wells
description We report the optical characterization of high-quality 1.55 mum GaxIn1-xNyAs1-y multiquantum wells (MQWs), grown on GaAs with Ga(In)N0.01As spacer layers. The transitions between the quantized QW states of the electrons and holes have been identified using photoluminescence excitation spectroscopy. Their energies are consistent with theoretical fitting based on the band anticrossing model. It is also confirmed by detailed spectroscopic measurements that the addition of even a small amount of In to GaN0.01As barriers remarkably improves the optical characteristics of the QWs. The results imply that although strain-compensated GaInNAs MQWs provide a feasible approach to realizing 1.55 mum optical emission, the relative lattice mismatch between the wells and barriers is critical to the optical quality of the related QWs.
author2 School of Physical and Mathematical Sciences
author_facet School of Physical and Mathematical Sciences
Sun, Handong
Calvez, Stephane
Dawson, M. D.
Qiu, Y. N.
Rorison, J. M.
Clark, Antony H.
Liu, H. Y.
Hopkinson, M.
format Article
author Sun, Handong
Calvez, Stephane
Dawson, M. D.
Qiu, Y. N.
Rorison, J. M.
Clark, Antony H.
Liu, H. Y.
Hopkinson, M.
author_sort Sun, Handong
title Optical characteristics of 1.55 μm GaInNAs multi-quantum wells
title_short Optical characteristics of 1.55 μm GaInNAs multi-quantum wells
title_full Optical characteristics of 1.55 μm GaInNAs multi-quantum wells
title_fullStr Optical characteristics of 1.55 μm GaInNAs multi-quantum wells
title_full_unstemmed Optical characteristics of 1.55 μm GaInNAs multi-quantum wells
title_sort optical characteristics of 1.55 μm gainnas multi-quantum wells
publishDate 2009
url https://hdl.handle.net/10356/90379
http://hdl.handle.net/10220/6060
http://sfxna09.hosted.exlibrisgroup.com:3410/ntu/sfxlcl3?sid=metalib:ELSEVIER_SCOPUS&id=doi:&genre=&isbn=&issn=&date=2004&volume=85&issue=18&spage=4013&epage=4015&aulast=Sun&aufirst=%20H%20D&auinit=&title=Applied%20Physics%20Letters&atitle=Optical%20characteristics%20of%201%2E55%20%CE%BCm%20GaInNAs%20multiple%20quantum%20wells&sici.
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