Spectroscopy and efficient laser operation near 1.95μm of Tm3+ in disordered NaLu(WO4)2

Author:

Han Xiumei1,Cano-Torres José M.1,Rico Mauricio1,Cascales Concepción1,Zaldo Carlos1,Mateos Xavier2,Rivier Simon2,Griebner Uwe2,Petrov Valentin2

Affiliation:

1. Instituto de Ciencia de Materiales de Madrid 1 , Consejo Superior de Investigaciones Científicas, c/Sor Juana Inés de la Cruz 3, 28049 Madrid, Spain

2. Max-Born-Institute for Nonlinear Optics and Ultrafast Spectroscopy 2 , 2A Max-Born-Strasse, D-12489 Berlin, Germany

Abstract

Continuous wave and tunable laser operation at room temperature is demonstrated with single crystals of Tm-doped NaLu(WO4)2. Under Ti:sapphire laser pumping and tuning by an intracavity Lyot filter, the Tm3+ emission extended from 1799to2026nm. The maximum output power exceeded 0.5W and the maximum slope efficiency with respect to the absorbed power was above 58%. These good laser properties are related to the locally disordered tetragonal (I4¯) structure of the crystalline host. Using low temperature spectroscopy and energy level simulation methods, the energy levels and spectroscopic properties of Tm3+ have been shown to be compatible with the S4 site symmetry. This allowed the reliable determination of the emission cross sections related to the laser transitions.

Publisher

AIP Publishing

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