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Exciton Fine Structure and Lattice Dynamics in InP/ZnSe Core/Shell Quantum Dots
[Image: see text] Nanocrystalline InP quantum dots (QDs) hold promise for heavy-metal-free optoelectronic applications due to their bright and size-tunable emission in the visible range. Photochemical stability and high photoluminescence (PL) quantum yield are obtained by a diversity of epitaxial sh...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2018
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6115013/ https://www.ncbi.nlm.nih.gov/pubmed/30175158 http://dx.doi.org/10.1021/acsphotonics.8b00615 |
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author | Brodu, Annalisa Ballottin, Mariana V. Buhot, Jonathan van Harten, Elleke J. Dupont, Dorian La Porta, Andrea Prins, P. Tim Tessier, Mickael D. Versteegh, Marijn A. M. Zwiller, Val Bals, Sara Hens, Zeger Rabouw, Freddy T. Christianen, Peter C. M. de Mello Donega, Celso Vanmaekelbergh, Daniel |
author_facet | Brodu, Annalisa Ballottin, Mariana V. Buhot, Jonathan van Harten, Elleke J. Dupont, Dorian La Porta, Andrea Prins, P. Tim Tessier, Mickael D. Versteegh, Marijn A. M. Zwiller, Val Bals, Sara Hens, Zeger Rabouw, Freddy T. Christianen, Peter C. M. de Mello Donega, Celso Vanmaekelbergh, Daniel |
author_sort | Brodu, Annalisa |
collection | PubMed |
description | [Image: see text] Nanocrystalline InP quantum dots (QDs) hold promise for heavy-metal-free optoelectronic applications due to their bright and size-tunable emission in the visible range. Photochemical stability and high photoluminescence (PL) quantum yield are obtained by a diversity of epitaxial shells around the InP core. To understand and optimize the emission line shapes, the exciton fine structure of InP core/shell QD systems needs be investigated. Here, we study the exciton fine structure of InP/ZnSe core/shell QDs with core diameters ranging from 2.9 to 3.6 nm (PL peak from 2.3 to 1.95 eV at 4 K). PL decay measurements as a function of temperature in the 10 mK to 300 K range show that the lowest exciton fine structure state is a dark state, from which radiative recombination is assisted by coupling to confined acoustic phonons with energies ranging from 4 to 7 meV, depending on the core diameter. Circularly polarized fluorescence line-narrowing (FLN) spectroscopy at 4 K under high magnetic fields (up to 30 T) demonstrates that radiative recombination from the dark F = ±2 state involves acoustic and optical phonons, from both the InP core and the ZnSe shell. Our data indicate that the highest intensity FLN peak is an acoustic phonon replica rather than a zero-phonon line, implying that the energy separation observed between the F = ±1 state and the highest intensity peak in the FLN spectra (6 to 16 meV, depending on the InP core size) is larger than the splitting between the dark and bright fine structure exciton states. |
format | Online Article Text |
id | pubmed-6115013 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-61150132018-08-30 Exciton Fine Structure and Lattice Dynamics in InP/ZnSe Core/Shell Quantum Dots Brodu, Annalisa Ballottin, Mariana V. Buhot, Jonathan van Harten, Elleke J. Dupont, Dorian La Porta, Andrea Prins, P. Tim Tessier, Mickael D. Versteegh, Marijn A. M. Zwiller, Val Bals, Sara Hens, Zeger Rabouw, Freddy T. Christianen, Peter C. M. de Mello Donega, Celso Vanmaekelbergh, Daniel ACS Photonics [Image: see text] Nanocrystalline InP quantum dots (QDs) hold promise for heavy-metal-free optoelectronic applications due to their bright and size-tunable emission in the visible range. Photochemical stability and high photoluminescence (PL) quantum yield are obtained by a diversity of epitaxial shells around the InP core. To understand and optimize the emission line shapes, the exciton fine structure of InP core/shell QD systems needs be investigated. Here, we study the exciton fine structure of InP/ZnSe core/shell QDs with core diameters ranging from 2.9 to 3.6 nm (PL peak from 2.3 to 1.95 eV at 4 K). PL decay measurements as a function of temperature in the 10 mK to 300 K range show that the lowest exciton fine structure state is a dark state, from which radiative recombination is assisted by coupling to confined acoustic phonons with energies ranging from 4 to 7 meV, depending on the core diameter. Circularly polarized fluorescence line-narrowing (FLN) spectroscopy at 4 K under high magnetic fields (up to 30 T) demonstrates that radiative recombination from the dark F = ±2 state involves acoustic and optical phonons, from both the InP core and the ZnSe shell. Our data indicate that the highest intensity FLN peak is an acoustic phonon replica rather than a zero-phonon line, implying that the energy separation observed between the F = ±1 state and the highest intensity peak in the FLN spectra (6 to 16 meV, depending on the InP core size) is larger than the splitting between the dark and bright fine structure exciton states. American Chemical Society 2018-07-17 2018-08-15 /pmc/articles/PMC6115013/ /pubmed/30175158 http://dx.doi.org/10.1021/acsphotonics.8b00615 Text en Copyright © 2018 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes. |
spellingShingle | Brodu, Annalisa Ballottin, Mariana V. Buhot, Jonathan van Harten, Elleke J. Dupont, Dorian La Porta, Andrea Prins, P. Tim Tessier, Mickael D. Versteegh, Marijn A. M. Zwiller, Val Bals, Sara Hens, Zeger Rabouw, Freddy T. Christianen, Peter C. M. de Mello Donega, Celso Vanmaekelbergh, Daniel Exciton Fine Structure and Lattice Dynamics in InP/ZnSe Core/Shell Quantum Dots |
title | Exciton Fine Structure and Lattice Dynamics in InP/ZnSe
Core/Shell Quantum Dots |
title_full | Exciton Fine Structure and Lattice Dynamics in InP/ZnSe
Core/Shell Quantum Dots |
title_fullStr | Exciton Fine Structure and Lattice Dynamics in InP/ZnSe
Core/Shell Quantum Dots |
title_full_unstemmed | Exciton Fine Structure and Lattice Dynamics in InP/ZnSe
Core/Shell Quantum Dots |
title_short | Exciton Fine Structure and Lattice Dynamics in InP/ZnSe
Core/Shell Quantum Dots |
title_sort | exciton fine structure and lattice dynamics in inp/znse
core/shell quantum dots |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6115013/ https://www.ncbi.nlm.nih.gov/pubmed/30175158 http://dx.doi.org/10.1021/acsphotonics.8b00615 |
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