Author
Listed:
- Mingjie Li
(National University of Singapore)
- Min Zhi
(National University of Singapore)
- Hai Zhu
(National University of Singapore)
- Wen-Ya Wu
(National University of Singapore)
- Qing-Hua Xu
(National University of Singapore)
- Mark Hyunpong Jhon
(Institute of High Performance Computing A*STAR)
- Yinthai Chan
(National University of Singapore
Institute of Materials Research & Engineering A*STAR
Microfluidics Systems Biology Lab, Institute of Molecular and Cell Biology A*STAR)
Abstract
Although multiphoton-pumped lasing from a solution of chromophores is important in the emerging fields of nonlinear optofluidics and bio-photonics, conventionally used organic dyes are often rendered unsuitable because of relatively small multiphoton absorption cross-sections and low photostability. Here, we demonstrate highly photostable, ultralow-threshold multiphoton-pumped biexcitonic lasing from a solution of colloidal CdSe/CdS nanoplatelets within a cuvette-based Fabry–Pérot optical resonator. We find that colloidal nanoplatelets surprisingly exhibit an optimal lateral size that minimizes lasing threshold. These nanoplatelets possess very large gain cross-sections of 7.3 × 10−14 cm2 and ultralow lasing thresholds of 1.2 and 4.3 mJ cm−2 under two-photon (λexc=800 nm) and three-photon (λexc=1.3 μm) excitation, respectively. The highly polarized emission from the nanoplatelet laser shows no significant photodegradation over 107 laser shots. These findings constitute a more comprehensive understanding of the utility of colloidal semiconductor nanoparticles as the gain medium in high-performance frequency-upconversion liquid lasers.
Suggested Citation
Mingjie Li & Min Zhi & Hai Zhu & Wen-Ya Wu & Qing-Hua Xu & Mark Hyunpong Jhon & Yinthai Chan, 2015.
"Ultralow-threshold multiphoton-pumped lasing from colloidal nanoplatelets in solution,"
Nature Communications, Nature, vol. 6(1), pages 1-8, December.
Handle:
RePEc:nat:natcom:v:6:y:2015:i:1:d:10.1038_ncomms9513
DOI: 10.1038/ncomms9513
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