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可调节胶体量子点分布反馈激光器集成在连续啁啾表面光栅上。

Tunable colloidal quantum dot distributed feedback lasers integrated on a continuously chirped surface grating.

机构信息

Department of Physics and Astronomy, Seoul National University, Seoul 08826, Republic of Korea.

出版信息

Nanoscale. 2018 Dec 13;10(48):22745-22749. doi: 10.1039/c8nr07854h.

Abstract

We report a colloidal quantum dot (CQD) distributed feedback (DFB) laser structure containing a chirped grating. The device exhibits single-mode DFB lasing, of which the wavelength is spatially dispersed in a single chip. A period-chirped surface grating is fabricated using a modified Lloyd-type laser interference lithography setup, where a flat Lloyd's mirror is replaced with a concave one. A dense red-emitting CdSe/CdS/ZnS CQD film is prepared on a temporary substrate by spin-coating, which is subsequently released and wet-transferred onto a period-chirped quartz surface grating. Upon optical excitation, the fabricated DFB laser device lases in a single mode at a laser threshold of ∼400 μJ cm-2, with its lasing wavelength shifted linearly (in proportion to the grating pitch) along the chirp direction from 613.4 nm to 623.2 nm over a distance of ∼5.6 mm.

摘要

我们报告了一种包含啁啾光栅的胶体量子点(CQD)分布反馈(DFB)激光结构。该器件表现出单模 DFB 激光,其波长在单个芯片中呈空间色散。通过修改的 Lloyd 型激光干涉光刻设备制造了周期啁啾表面光栅,其中用凹面 Lloyd 镜代替了平面 Lloyd 镜。通过旋转涂层在临时衬底上制备了密集的红色发射 CdSe/CdS/ZnS CQD 薄膜,然后将其释放并湿转移到周期啁啾石英表面光栅上。在光激发下,所制造的 DFB 激光器件在激光阈值约为 400 μJ cm-2 时以单模激射,其激射波长沿啁啾方向线性(与光栅节距成比例)从 613.4nm 到 623.2nm 移动,距离约为 5.6mm。

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