Optical study of colloidal quantum dots : toward efficient emission and lasing upon single- and multi-photon excitation

Colloidal quantum dots (CQDs) have become the research hotspot due to their exceptional merits including the facile emission spectral tunability by size and composition tailoring, the solution processibility, the broad absorption and the narrow emission spectra and so on. In this thesis, main effort...

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Main Author: Wang, Yue
Other Authors: Sun Handong
Format: Theses and Dissertations
Language:English
Published: 2015
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Online Access:https://hdl.handle.net/10356/65555
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-655552023-02-28T23:52:35Z Optical study of colloidal quantum dots : toward efficient emission and lasing upon single- and multi-photon excitation Wang, Yue Sun Handong School of Physical and Mathematical Sciences DRNTU::Science::Physics::Optics and light Colloidal quantum dots (CQDs) have become the research hotspot due to their exceptional merits including the facile emission spectral tunability by size and composition tailoring, the solution processibility, the broad absorption and the narrow emission spectra and so on. In this thesis, main efforts are devoted to explore the fundamental linear and nonlinear optical properties of CQDs and develop applications of CQD-based micro-lasers. The third-order nonlinear optical properties of heavy metal-free InP/ZnS CQDs have been comprehensively studied, which reveals that the InP/ZnS CQDs are potentially excellent fluorescent bio-probes under two-photon excitation. By rationally designing and employing the CdSe/CdS/ZnS core/shell/shell CQDs as the optical gain material, three-photon induced amplified spontaneous emission and lasing have been realized for the first time from CQDs. Record low threshold stimulated emission in blue spectral range have been achieved from the ternary alloy CdZnS/ZnS core/shell CQDs thanks to the intrinsic slow nonradiative Auger recombination. To solve the “green gap” challenge experienced in epitaxial semiconductor lasers, the optical gain properties of the green-emitting quaternary alloy CdZnSeS/ZnS core/shell has been comprehensively investigated for the first time, and ultra-low threshold stimulated emission in green region has been observed. Furthermore, low threshold whispering gallery mode lasers in blue and green regime under quasi-continuous wave pumping have been produced leveraging on CdZnS/ZnS and CdZnSeS/ZnS CQDs, respectively. Our results represent a great progress in the development of CQD-based lasers and hold strong potential in wide range of field in biology and photonics and their interaction of biophotonics. DOCTOR OF PHILOSOPHY (SPMS) 2015-11-12T02:45:54Z 2015-11-12T02:45:54Z 2015 2015 Thesis Wang, Y. (2015). Optical study of colloidal quantum dots: toward efficient emission and lasing upon single- and multi-photon excitation. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/65555 10.32657/10356/65555 en 160 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
Wang, Yue
Optical study of colloidal quantum dots : toward efficient emission and lasing upon single- and multi-photon excitation
description Colloidal quantum dots (CQDs) have become the research hotspot due to their exceptional merits including the facile emission spectral tunability by size and composition tailoring, the solution processibility, the broad absorption and the narrow emission spectra and so on. In this thesis, main efforts are devoted to explore the fundamental linear and nonlinear optical properties of CQDs and develop applications of CQD-based micro-lasers. The third-order nonlinear optical properties of heavy metal-free InP/ZnS CQDs have been comprehensively studied, which reveals that the InP/ZnS CQDs are potentially excellent fluorescent bio-probes under two-photon excitation. By rationally designing and employing the CdSe/CdS/ZnS core/shell/shell CQDs as the optical gain material, three-photon induced amplified spontaneous emission and lasing have been realized for the first time from CQDs. Record low threshold stimulated emission in blue spectral range have been achieved from the ternary alloy CdZnS/ZnS core/shell CQDs thanks to the intrinsic slow nonradiative Auger recombination. To solve the “green gap” challenge experienced in epitaxial semiconductor lasers, the optical gain properties of the green-emitting quaternary alloy CdZnSeS/ZnS core/shell has been comprehensively investigated for the first time, and ultra-low threshold stimulated emission in green region has been observed. Furthermore, low threshold whispering gallery mode lasers in blue and green regime under quasi-continuous wave pumping have been produced leveraging on CdZnS/ZnS and CdZnSeS/ZnS CQDs, respectively. Our results represent a great progress in the development of CQD-based lasers and hold strong potential in wide range of field in biology and photonics and their interaction of biophotonics.
author2 Sun Handong
author_facet Sun Handong
Wang, Yue
format Theses and Dissertations
author Wang, Yue
author_sort Wang, Yue
title Optical study of colloidal quantum dots : toward efficient emission and lasing upon single- and multi-photon excitation
title_short Optical study of colloidal quantum dots : toward efficient emission and lasing upon single- and multi-photon excitation
title_full Optical study of colloidal quantum dots : toward efficient emission and lasing upon single- and multi-photon excitation
title_fullStr Optical study of colloidal quantum dots : toward efficient emission and lasing upon single- and multi-photon excitation
title_full_unstemmed Optical study of colloidal quantum dots : toward efficient emission and lasing upon single- and multi-photon excitation
title_sort optical study of colloidal quantum dots : toward efficient emission and lasing upon single- and multi-photon excitation
publishDate 2015
url https://hdl.handle.net/10356/65555
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