OPTICAL STUDIES OF EXCITONS IN GAINAS/INP QUANTUM WELLS GROWN BY LOW-PRESSURE METAL ORGANIC VAPOR-PHASE EPITAXY

The authors report optical studies of excitons in a GaInAs/InP multiple-quantum-well structure grown by low-pressure metal-organic vapour-phase epitaxy. Sharp n=1 heavy- and light-hole excitonic structure is observed in low-intensity absorption spectra at 4 K and room temperature. The low-temperatur...

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Main Authors: Shorthose, M, Maciel, A, Ryan, J, Scott, M, Davies, J, Moseley, A
Format: Journal article
Language:English
Published: 1988
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author Shorthose, M
Maciel, A
Ryan, J
Scott, M
Davies, J
Moseley, A
author_facet Shorthose, M
Maciel, A
Ryan, J
Scott, M
Davies, J
Moseley, A
author_sort Shorthose, M
collection OXFORD
description The authors report optical studies of excitons in a GaInAs/InP multiple-quantum-well structure grown by low-pressure metal-organic vapour-phase epitaxy. Sharp n=1 heavy- and light-hole excitonic structure is observed in low-intensity absorption spectra at 4 K and room temperature. The low-temperature exciton luminescence linewidth of 5 meV and the long carrier lifetime at room temperature of 47 ns (at low excitation density) indicate the high quality of the sample. They have measured the dependence of the absorption coefficient on incident light intensity at the n=1 heavy-hole exciton and find pronounced nonlinearity with a low-intensity nonlinear absorption coefficient of 700 cm W-1 and the lowest saturation intensity yet reported for a quantum well system, 3.6 W cm-2.
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spelling oxford-uuid:81bd40ca-d00e-4bc3-b078-ffdff9de9a6c2022-03-26T21:32:16ZOPTICAL STUDIES OF EXCITONS IN GAINAS/INP QUANTUM WELLS GROWN BY LOW-PRESSURE METAL ORGANIC VAPOR-PHASE EPITAXYJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:81bd40ca-d00e-4bc3-b078-ffdff9de9a6cEnglishSymplectic Elements at Oxford1988Shorthose, MMaciel, ARyan, JScott, MDavies, JMoseley, AThe authors report optical studies of excitons in a GaInAs/InP multiple-quantum-well structure grown by low-pressure metal-organic vapour-phase epitaxy. Sharp n=1 heavy- and light-hole excitonic structure is observed in low-intensity absorption spectra at 4 K and room temperature. The low-temperature exciton luminescence linewidth of 5 meV and the long carrier lifetime at room temperature of 47 ns (at low excitation density) indicate the high quality of the sample. They have measured the dependence of the absorption coefficient on incident light intensity at the n=1 heavy-hole exciton and find pronounced nonlinearity with a low-intensity nonlinear absorption coefficient of 700 cm W-1 and the lowest saturation intensity yet reported for a quantum well system, 3.6 W cm-2.
spellingShingle Shorthose, M
Maciel, A
Ryan, J
Scott, M
Davies, J
Moseley, A
OPTICAL STUDIES OF EXCITONS IN GAINAS/INP QUANTUM WELLS GROWN BY LOW-PRESSURE METAL ORGANIC VAPOR-PHASE EPITAXY
title OPTICAL STUDIES OF EXCITONS IN GAINAS/INP QUANTUM WELLS GROWN BY LOW-PRESSURE METAL ORGANIC VAPOR-PHASE EPITAXY
title_full OPTICAL STUDIES OF EXCITONS IN GAINAS/INP QUANTUM WELLS GROWN BY LOW-PRESSURE METAL ORGANIC VAPOR-PHASE EPITAXY
title_fullStr OPTICAL STUDIES OF EXCITONS IN GAINAS/INP QUANTUM WELLS GROWN BY LOW-PRESSURE METAL ORGANIC VAPOR-PHASE EPITAXY
title_full_unstemmed OPTICAL STUDIES OF EXCITONS IN GAINAS/INP QUANTUM WELLS GROWN BY LOW-PRESSURE METAL ORGANIC VAPOR-PHASE EPITAXY
title_short OPTICAL STUDIES OF EXCITONS IN GAINAS/INP QUANTUM WELLS GROWN BY LOW-PRESSURE METAL ORGANIC VAPOR-PHASE EPITAXY
title_sort optical studies of excitons in gainas inp quantum wells grown by low pressure metal organic vapor phase epitaxy
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