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量子点等离子体晶格激光器中的双波长激光发射

Dual-Wavelength Lasing in Quantum-Dot Plasmonic Lattice Lasers.

作者信息

Winkler Jan M, Ruckriegel Max J, Rojo Henar, Keitel Robert C, De Leo Eva, Rabouw Freddy T, Norris David J

机构信息

Optical Materials Engineering Laboratory, Department of Mechanical and Process Engineering, ETH Zurich, 8092 Zurich, Switzerland.

出版信息

ACS Nano. 2020 May 26;14(5):5223-5232. doi: 10.1021/acsnano.9b09698. Epub 2020 Mar 18.

Abstract

Arrays of metallic particles patterned on a substrate have emerged as a promising design for on-chip plasmonic lasers. In past examples of such devices, the periodic particles provided feedback at a single resonance wavelength, and organic dye molecules were used as the gain material. Here, we introduce a flexible template-based fabrication method that allows a broader design space for Ag particle-array lasers. Instead of dye molecules, we integrate colloidal quantum dots (QDs), which offer better photostability and wavelength tunability. Our fabrication approach also allows us to easily adjust the refractive index of the substrate and the QD-film thickness. Exploiting these capabilities, we demonstrate not only single-wavelength lasing but dual-wavelength lasing two distinct strategies. First, by using particle arrays with rectangular lattice symmetries, we obtain feedback from two orthogonal directions. The two output wavelengths from this laser can be selected individually using a linear polarizer. Second, by adjusting the QD-film thickness, we use higher-order transverse waveguide modes in the QD film to obtain dual-wavelength lasing at normal and off-normal angles from a symmetric square array. We thus show that our approach offers various design possibilities to tune the laser output.

摘要

在衬底上图案化的金属颗粒阵列已成为片上等离子体激光器的一种有前景的设计。在这类器件过去的示例中,周期性颗粒在单个共振波长处提供反馈,并且有机染料分子被用作增益材料。在此,我们介绍一种基于柔性模板的制造方法,该方法为银颗粒阵列激光器提供了更广阔的设计空间。我们整合了胶体量子点(QDs)来替代染料分子,胶体量子点具有更好的光稳定性和波长可调性。我们的制造方法还使我们能够轻松调整衬底的折射率和量子点薄膜的厚度。利用这些能力,我们展示了不仅有单波长激光发射,还有双波长激光发射——两种不同的策略。首先,通过使用具有矩形晶格对称性的颗粒阵列,我们从两个正交方向获得反馈。该激光器的两个输出波长可以使用线性偏振器分别选择。其次,通过调整量子点薄膜的厚度,我们利用量子点薄膜中的高阶横向波导模式,从对称方形阵列在法线和非法线角度获得双波长激光发射。因此,我们表明我们的方法提供了各种设计可能性来调谐激光输出。

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