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Enhancement of optical gain characteristics of quantum dot films by optimization of organic ligands

机译:通过优化有机配体来增强量子点膜的光学增益特性

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This work examines how the optimization of molecular dimensions and chemical functionality of the organic ligands of quantum dots (QDs) can be explored for dramatic enhancement of the optical properties of QD films, particularly, optical gain. We show that the replacement of traditional QD organic ligands with a much shorter ligand, butylamine, yields a dense QD-packing that results in a two-fold increase in optical gain. Overall, the highly packed QD films exhibit very large net gain values (similar to 500 cm(-1)) which greatly exceed typical Cd-based QD films with traditional ligands. In addition, thresholds for amplified-spontaneous emission (ASE) down to 50 mu J cm(-2) were observed, which is exceptionally low for ns-pulse pumped QD systems. Our results confirm an additional route for obtaining high optical gain using QDs, and outline a strategy for modifying the optical gain characteristics by ligand exchange without needing to modify the QD selection. Consideration of the ligands along with QD compositional design could make it possible to fabricate photonic systems with exceptionally low lasing thresholds, and offers a route toward achieving high gain using steady state pumping, an extremely difficult feat to achieve in traditional QD systems.
机译:这项工作研究了如何探索量子点(QD)有机配体的分子尺寸和化学官能度的优化,以显着提高QD薄膜的光学性能,特别是光学增益。我们表明用更短的配体丁胺代替传统的QD有机配体会产生密集的QD堆积,从而导致光学增益增加两倍。总体而言,高度堆积的QD薄膜显示出非常大的净增益值(类似于500 cm(-1)),大大超过了具有传统配体的典型Cd基QD薄膜。此外,观察到低至50μJ·cm(-2)的自发放大(ASE)阈值,对于ns脉冲泵浦QD系统,该阈值异常低。我们的结果证实了使用量子点获得高光学增益的另一条途径,并概述了通过配体交换来修饰光学增益特性而无需修改量子点选择的策略。将配体与QD组成设计一起考虑,可以制造出激光阈值极低的光子系统,并为使用稳态泵浦实现高增益提供了一条途径,这在传统QD系统中很难实现。

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