Numerical modeling of Dy3+-doped aluminosilicate fiber lasers for yellow light emission

Author:

Lee JinhoORCID,Ososkov YanORCID,Jackson Stuart D.ORCID

Abstract

Numerical simulations of Dy3+-doped aluminosilicate fiber lasers for yellow light emission are presented. The 4F9/26H13/2 laser transition emitting at approximately 580 nm has been developed experimentally with 445 nm diode pumping and shows promise for higher output power in both silicate and in particular fluoride glass hosts. In this report, we focus on accumulating the published spectroscopic data in order to quantify cross relaxation (CR) in each of these hosts and use it to estimate its role in the laser dynamics. The model involves calculation of the branching ratios, and radiative and nonradiative decay rates and compares well with reported experimental results. We show the important role of the background losses on previous laser performance and the relatively strong increase in the laser threshold as a result of CR despite the moderately low Dy3+ concentrations that have been experimentally tested.

Funder

Australian Research Council

Publisher

Optica Publishing Group

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Visible silica fiber laser based on Dy:BaF2 nanoparticle doping;Optical Materials Express;2024-07-23

2. Optimizing Dysprosium-Doped Fiber Lasers for Direct Yellow Emission: A Comprehensive Numerical Analysis;2024 24th International Conference on Transparent Optical Networks (ICTON);2024-07-14

3. Optics and Photonics in Sydney: introduction to the focus issue;Applied Optics;2024-05-03

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