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液体环境中腔结构对聚合物激光器调谐特性的影响

Effects of Cavity Structure on Tuning Properties of Polymer Lasers in a Liquid Environment.

作者信息

Cao Fengzhao, Zhang Shuai, Tong Junhua, Chen Chao, Niu Lianze, Zhai Tianrui, Zhang Xinping

机构信息

Institute of Information Photonics Technology and College of Applied Sciences, Beijing University of Technology, Beijing 100124, China.

出版信息

Polymers (Basel). 2019 Feb 14;11(2):329. doi: 10.3390/polym11020329.

Abstract

The effect of cavity structures on the tuning properties of polymer lasers was investigated in two common distributed-feedback cavities. The configurations of the two cavities are substrate/grating/active waveguide and substrate/active waveguide/grating, respectively. The polymer lasers were operated in the liquid environment, and the laser wavelength was tuned dynamically by changing the refractive index of the liquid. Polymer lasers based on the substrate/grating/active waveguide structure showed a higher tunability than those based on the substrate/active waveguide/grating structure due to a larger electric field distribution of the laser mode in the liquid environment. It is expected that these results will be useful in the development of tunable laser sources.

摘要

在两种常见的分布反馈腔中研究了腔结构对聚合物激光器调谐特性的影响。这两种腔的结构分别是衬底/光栅/有源波导和衬底/有源波导/光栅。聚合物激光器在液体环境中工作,通过改变液体的折射率来动态调谐激光波长。由于在液体环境中激光模式的电场分布更大,基于衬底/光栅/有源波导结构的聚合物激光器比基于衬底/有源波导/光栅结构的聚合物激光器表现出更高的可调谐性。预计这些结果将有助于可调谐激光源的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5e3/6419154/2c9d8ca65604/polymers-11-00329-g001.jpg

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