Ultrashort laser pulse doubling by metal-halide perovskite multiple quantum wells
Top Cited Papers
Open Access
- 17 July 2020
- journal article
- research article
- Published by Springer Nature in Nature Communications
- Vol. 11 (1), 1-8
- https://doi.org/10.1038/s41467-020-17096-6
Abstract
Multiple ultrashort laser pulses are widely used in optical spectroscopy, optoelectronic manipulation, optical imaging and optical signal processing etc. The laser pulse multiplication, so far, is solely realized by using the optical setups or devices to modify the output laser pulse from the optical gain medium. The employment of these external techniques is because the gain medium itself is incapable of modifying or multiplying the generated laser pulse. Herein, with single femtosecond laser pulse excitation, we achieve the double-pulsed stimulated emission with pulse duration of around 40 ps and pulse interval of around 70 ps from metal-halide perovskite multiple quantum wells. These unique stimulated emissions originate from one fast vertical and the other slow lateral high-efficiency carrier funneling from low-dimensional to high-dimensional quantum wells. Furthermore, such gain medium surprisingly possesses nearly Auger-free stimulated emission. These insights enable us a fresh approach to multiple the ultrashort laser pulse by gain medium.Funding Information
- Hong Kong Polytechnic University (P0031122)
- Universidade de Macau (SRG2016-00087-FST; MYRG2018-00148-IAPME)
- National Natural Science Foundation of China (61605073; 61935017; 91733302)
- the Science and Technology Development Fund, Macau SAR
This publication has 50 references indexed in Scilit:
- Ultralow-Threshold Two-Photon Pumped Amplified Spontaneous Emission and Lasing from Seeded CdSe/CdS Nanorod HeterostructuresACS Nano, 2012
- Low Threshold, Amplified Spontaneous Emission from Core‐Seeded Semiconductor Nanotetrapods Incorporated into a Sol–Gel MatrixAdvanced Materials, 2012
- On-chip CMOS-compatible all-optical integratorNature Communications, 2010
- Coherent control of a single exciton qubit by optoelectronic manipulationNature Photonics, 2010
- Universal Size-Dependent Trend in Auger Recombination in Direct-Gap and Indirect-Gap Semiconductor NanocrystalsPhysical Review Letters, 2009
- Sparking new applicationsNature Photonics, 2008
- Optical Gain and Stimulated Emission in Nanocrystal Quantum DotsScience, 2000
- Femtosecond optical pulse shaping and processingProgress in Quantum Electronics, 1995
- Nonlinear Plasma Waves Resonantly Driven by Optimized Laser Pulse TrainsPhysical Review Letters, 1994
- Picosecond dark soliton over a 1-km fiber at 850 nmOptics Letters, 1993