Title of article :
Pulsed laser deposition of fluoride glass thin films
Author/Authors :
Dimitri Ganser، نويسنده , , Jens Gottmann، نويسنده , , Uwe Mackens، نويسنده , , Ulrich Weichmann، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Abstract :
The development of integrated waveguide lasers for different applications such as marking, illumination or medical technology has become highly desirable. Diode pumped planar waveguide lasers emitting in the green visible spectral range, e.g. thin films from praseodymium doped fluorozirconate glass matrix (called ZBLAN, owing to the main components ZrF4, BaF2, LaF3, AlF3 and NaF) as the active material pumped by a blue laser diode, have aroused great interest. In this work we have investigated the deposition of Pr:ZBLAN thin films using pulsed laser radiation of λ = 193 and λ = 248 nm. The deposition has been carried out on MgF2 single crystal substrates in a vacuum chamber by varying both processing gas pressure and energy fluence. The existence of an absorption line at 210 nm in Pr:ZBLAN leads to absorption and radiative relaxation of the absorbed laser energy of λ = 193 nm preventing the evaporation of target material. The deposited thin films consist of solidified and molten droplets and irregular particulates only. Furthermore, X-ray radiation has been applied to fluoride glass targets to enhance the absorption in the UV spectral region and to investigate the deposition of X-ray treated targets applying laser radiation of λ = 248 nm. It has been shown that induced F-centres near the target surface are not thermally stable and can be easily ablated. Therefore, λ = 248 nm is not suitable for evaporation of Pr:ZBLAN.
Keywords :
Pulsed laser deposition , Praseodymium , Fluoride glass , Induced absorption , X-ray irradiation , Thin films
Journal title :
Applied Surface Science
Journal title :
Applied Surface Science