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Effects of crossed states on photoluminescence excitation spectroscopy of InAs quantum dots

In this report, the influence of the intrinsic transitions between bound-to-delocalized states (crossed states or quasicontinuous density of electron-hole states) on photoluminescence excitation (PLE) spectra of InAs quantum dots (QDs) was investigated. The InAs QDs were different in size, shape, an...

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Published in:Nanoscale research letters 2011-06, Vol.6 (1), p.409-409, Article 409
Main Authors: Shih, Ching-I, Lin, Chien-Hung, Lin, Shin-Chin, Lin, Ta-Chun, Sun, Kien Wen, Voskoboynikov, Oleksandr (Alex), Lee, Chien-Ping, Suen, Yuen-Wuu
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container_title Nanoscale research letters
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creator Shih, Ching-I
Lin, Chien-Hung
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Lee, Chien-Ping
Suen, Yuen-Wuu
description In this report, the influence of the intrinsic transitions between bound-to-delocalized states (crossed states or quasicontinuous density of electron-hole states) on photoluminescence excitation (PLE) spectra of InAs quantum dots (QDs) was investigated. The InAs QDs were different in size, shape, and number of bound states. Results from the PLE spectroscopy at low temperature and under a high magnetic field (up to 14 T) were compared. Our findings show that the profile of the PLE resonances associated with the bound transitions disintegrated and broadened. This was attributed to the coupling of the localized QD excited states to the crossed states and scattering of longitudinal acoustical (LA) phonons. The degree of spectral linewidth broadening was larger for the excited state in smaller QDs because of the higher crossed joint density of states and scattering rate.
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subjects Chemistry and Materials Science
Materials Science
Molecular Medicine
Nano Express
Nanochemistry
Nanoscale Science and Technology
Nanotechnology
Nanotechnology and Microengineering
title Effects of crossed states on photoluminescence excitation spectroscopy of InAs quantum dots
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