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新一代全色多毫瓦级胶体量子点激光器。

A New Generation of Multimilliwatt-Class Colloidal Quantum-Dot Lasers at Full Colors.

作者信息

Zhang Hao, Jiao Kerong, Hu Yongsheng, Huang Zhigao, Wu Yuting, Song Qingxiu, Ta Van Duong, Sun Handong, Shen Hua, Wang Yue

机构信息

College of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China.

MIIT Key Laboratory of Advanced Solid Laser, School of Electronic Engineering and Optoelectronic Technology, Nanjing University of Science and Technology, Nanjing, 210094, China.

出版信息

Adv Mater. 2025 Feb;37(5):e2413828. doi: 10.1002/adma.202413828. Epub 2024 Dec 12.

Abstract

Colloidal quantum dots (QDs) are attractive gain materials owing to the wide range of accessible colors. However, the existing QD lasers struggle to combine technologically relevant metrics of low threshold and long operating duration with considerable output powers. Here a new class of full-color QD lasers are reported, featuring low threshold, uninterrupted operation for dozens of hours, and multimilliwatt output under quasi-steady-state pumping, by coupling the high-gain QDs with a double-clad pumping scheme. Corroborated by the comprehensive transient spectroscopy and numerical simulation, it is demonstrated that the ternary QDs with specially designed fine nanostructure enable the low gain threshold, giant gain coefficient, long gain lifetime, and excellent resistance against intense photoexcitation. Meanwhile, the double-clad QD-fiber design allows for record-long light-gain interaction, high conversion efficiency, and sustained device operation. As such, the QD lasers with multimilliwatt output powers, unobserved in QD lasers to date, have been realized. Further, the proof-of-concept application for generating vortex beams with various topological charges is demonstrated. This work represents significant progress toward practical lasers based on QDs.

摘要

胶体量子点(QDs)因其可实现的颜色范围广泛而成为有吸引力的增益材料。然而,现有的量子点激光器难以将低阈值、长工作持续时间等与技术相关的指标与可观的输出功率相结合。本文报道了一类新型的全色量子点激光器,通过将高增益量子点与双包层泵浦方案相结合,其具有低阈值、数十小时不间断运行以及在准稳态泵浦下数毫瓦的输出功率。经全面的瞬态光谱和数值模拟证实,具有特殊设计精细纳米结构的三元量子点能够实现低增益阈值、巨大的增益系数、长增益寿命以及对强光激发的优异抗性。同时,双包层量子点光纤设计实现了创纪录的长光增益相互作用、高转换效率以及器件的持续运行。如此一来,实现了迄今为止量子点激光器中未曾观测到的具有数毫瓦输出功率的量子点激光器。此外,还展示了用于产生具有各种拓扑电荷的涡旋光束的概念验证应用。这项工作代表了基于量子点的实用激光器取得的重大进展。

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