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利用准晶分布反馈光子模式的高效表面发射半导体激光器。

Highly efficient surface-emitting semiconductor lasers exploiting quasi-crystalline distributed feedback photonic patterns.

作者信息

Biasco Simone, Ciavatti Andrea, Li Lianhe, Giles Davies A, Linfield Edmund H, Beere Harvey, Ritchie David, Vitiello Miriam S

机构信息

1NEST, CNR - Istituto Nanoscienze and Scuola Normale Superiore, Piazza San Silvestro 12, 56127 Pisa, Italy.

2School of Electronic and Electrical Engineering, University of Leeds, Leeds, LS2 9JT UK.

出版信息

Light Sci Appl. 2020 Apr 9;9:54. doi: 10.1038/s41377-020-0294-z. eCollection 2020.

Abstract

Quasi-crystal distributed feedback lasers do not require any form of mirror cavity to amplify and extract radiation. Once implemented on the top surface of a semiconductor laser, a quasi-crystal pattern can be used to tune both the radiation feedback and the extraction of highly radiative and high-quality-factor optical modes that do not have a defined symmetric or anti-symmetric nature. Therefore, this methodology offers the possibility to achieve efficient emission, combined with tailored spectra and controlled beam divergence. Here, we apply this concept to a one-dimensional quantum cascade wire laser. By lithographically patterning a series of air slits with different widths, following the Octonacci sequence, on the top metal layer of a double-metal quantum cascade laser operating at THz frequencies, we can vary the emission from single-frequency-mode to multimode over a 530-GHz bandwidth, achieving a maximum peak optical power of 240 mW (190 mW) in multimode (single-frequency-mode) lasers, with record slope efficiencies for multimode surface-emitting disordered THz lasers up to ≈570 mW/A at 78 K and ≈720 mW/A at 20 K and wall-plug efficiencies of  ≈ 1%.

摘要

准晶体分布反馈激光器不需要任何形式的镜腔来放大和提取辐射。一旦在半导体激光器的顶面上实现,准晶体图案可用于调节辐射反馈以及高度辐射且高品质因数的光学模式的提取,这些光学模式不具有明确的对称或反对称性质。因此,这种方法提供了实现高效发射的可能性,同时兼具定制光谱和可控光束发散。在此,我们将这一概念应用于一维量子级联线激光器。通过在太赫兹频率下工作的双金属量子级联激光器的顶部金属层上按照八阶斐波那契序列光刻出一系列不同宽度的空气狭缝,我们可以在530吉赫兹的带宽内将发射从单频模式改变为多模模式,在多模(单频模式)激光器中分别实现了240毫瓦(190毫瓦)的最大峰值光功率,对于多模表面发射无序太赫兹激光器,在78开尔文时达到了高达约570毫瓦/安的创纪录斜率效率,在20开尔文时约为720毫瓦/安,壁插效率约为1%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bdd/7142150/13098e2fa884/41377_2020_294_Fig1_HTML.jpg

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