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连续波双激子激光室温下使用溶液处理量子阱。

Continuous-wave biexciton lasing at room temperature using solution-processed quantum wells.

机构信息

Istituto Italiano di Tecnologia, via Morego 30, IT-16163 Genova, Italy.

出版信息

Nat Nanotechnol. 2014 Nov;9(11):891-5. doi: 10.1038/nnano.2014.213. Epub 2014 Oct 5.

Abstract

Solution-processed inorganic and organic materials have been pursued for more than a decade as low-threshold, high-gain lasing media, motivated in large part by their tunable optoelectronic properties and ease of synthesis and processing. Although both have demonstrated stimulated emission and lasing, they have not yet approached the continuous-wave pumping regime. Two-dimensional CdSe colloidal nanosheets combine the advantage of solution synthesis with the optoelectronic properties of epitaxial two-dimensional quantum wells. Here, we show that these colloidal quantum wells possess large exciton and biexciton binding energies of 132 meV and 30 meV, respectively, giving rise to stimulated emission from biexcitons at room temperature. Under femtosecond pulsed excitation, close-packed thin films yield an ultralow stimulated emission threshold of 6 μJ cm(-2), sufficient to achieve continuous-wave pumped stimulated emission, and lasing when these layers are embedded in surface-emitting microcavities.

摘要

十多年来,人们一直在探索溶液处理的无机和有机材料,作为低阈值、高增益的激光介质,这在很大程度上是因为它们可调谐的光电性能以及易于合成和处理。尽管这两种材料都已经证明了受激发射和激光,但是它们还没有达到连续波泵浦的状态。二维 CdSe 胶体纳米片将溶液合成的优势与外延二维量子阱的光电性能相结合。在这里,我们展示了这些胶体量子阱具有大的激子和双激子束缚能,分别为 132 meV 和 30 meV,从而在室温下产生双激子的受激发射。在飞秒脉冲激发下,紧密堆积的薄膜产生了超低的受激发射阈值为 6 μJ cm(-2),足以实现连续波泵浦受激发射,并且当这些层嵌入表面发射微腔时可以产生激光。

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