High-power Tm-doped fiber distributed-feedback laser at 1943 nm

We report on high-power operation of a fiber distributed-feedback (DFB) laser fabricated from Tm-doped photosensitive alumino-silicate fiber and in-band pumped by an Er/Yb fiber laser at 1565 nm. The fiber DFB laser yielded up to 875 mW of single-ended output at 1943 nm on two orthogonally polarized...

Full description

Bibliographic Details
Main Authors: Zhang, Z. (Author), Shen, D.Y (Author), Boyland, A.J (Author), Sahu, J.K (Author), Clarkson, W.A (Author), Ibsen, M. (Author)
Format: Article
Language:English
Published: 2008-09-15.
Subjects:
Online Access:Get fulltext
Description
Summary:We report on high-power operation of a fiber distributed-feedback (DFB) laser fabricated from Tm-doped photosensitive alumino-silicate fiber and in-band pumped by an Er/Yb fiber laser at 1565 nm. The fiber DFB laser yielded up to 875 mW of single-ended output at 1943 nm on two orthogonally polarized modes for 3.5 W of absorbed pump power. Further scaling of the DFB laser output power was achieved with the aid of a simple Tm-doped fiber amplifier stage spliced directly to the DFB fiber without the need of an optical isolator. The maximum output power from the DFB laser and fiber amplifier was >3 W for a combined absorbed pump power of 8.1 W. The influence of thermal loading, owing to quantum defect heating in the Tm doped core, on the output power and longitudinal mode behavior is discussed, and the prospects for further improvement in performance are considered.