Cascade laser optimization for 3H43H5 and 3F43H6 sequent transitions in Tm3+-doped materials

Author:

Dupont Hippolyte,Guillemot Lauren1ORCID,Loiko Pavel1,Solé Rosa Maria2ORCID,Mateos Xavier2ORCID,Aguiló Magdalena2,Díaz Francesc2,Braud Alain1,Camy Patrice1,Georges PatrickORCID,Druon FrédéricORCID

Affiliation:

1. Université de Caen

2. Universitat Rovira i Virgili (URV)

Abstract

We study a cascade laser scheme involving the 3H43H5 and 3F43H6 consecutive transitions in Tm3+-doped materials as a promising technique to favor laser emission at 2.3 µm. We examine the conditions in terms of the Tm3+ doping levels for which the cascade laser is beneficial or not. For this, Tm:LiYF4 lasers based on crystals with several doping levels in the range of 2.5 - 6 at.% with and without cascade laser are studied. For low doping of 2.5 at.% Tm3+, adding the laser emission at 1.9 µm allows to double the output power at 2.3 µm, whereas for high doping of 6 at.%, allowing the laser to operate at 1.9 µm totally suppresses the laser emission at 2.3 µm. An analytical model is developed and confronted with experimental results to predict this doping-dependent phenomenon and forecast the potential benefits. This study of cascade laser emission on the 3H43H5 and 3F43H6 transitions versus the Tm3+ doping level is finally extended to other well-known Tm3+-doped laser materials.

Funder

Agencia Estatal de Investigación

Région Normandie

Agence Nationale de la Recherche

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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