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Erbium-Doped fluoride glass waveguides for laser applications

机译:用于激光应用的掺fluoride氟化物玻璃波导

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A compact green laser diode pumped rare earth laser source is interesting for a range of medical, spectroscopic and communications applications. Since such a device is not commercially available up to now we are working on the development of an erbium-doped fluoride glass up-conversion waveguide laser. The actual fabrication of fluoride glass, especially ZBLAN (ZrF4-BaF2-LaF3-AlF3-NaF), strip waveguides on monocrystalline CaF2-substrates is described. The ZBLAN glass was doped with 3 mol% erbium fluoride (ErF3). Hot dip spin coating was used for the coating of the substrates. Structuring of the glass films was done by photolithography and a wet chemical etching method. Improvement of these processes will be an important step for the realization of a low loss waveguide as well as the laser. Until now planar waveguides with thicknesses down to 30 µm were achieved. Parameters for laser activity were simulated and following that simulation a diode-pumped waveguide laser is feasible. A simple laser setup for the waveguide samples with external resonator mirrors was built.
机译:紧凑的绿色激光二极管泵浦稀土激光源对于医疗,光谱和通信应用范围很重要。由于这种设备到现在还不能在市场上买到,所以我们正在研究掺-氟化物玻璃上转换波导激光器。氟化物玻璃的实际制造,尤其是ZBLAN(ZrF 4 -BaF 2 -LaF 3 -AlF 3 - NaF),单晶CaF 2 衬底上的条形波导。 ZBLAN玻璃中掺有3摩尔%的氟化(ErF 3 )。热浸旋涂用于基材的涂覆。玻璃膜的结构通过光刻法和湿式化学蚀刻法进行。这些工艺的改进将是实现低损耗波导以及激光器的重要一步。到目前为止,已经实现了厚度低至30 µm的平面波导。模拟了用于激光活动的参数,并且在此之后,二极管泵浦波导激光器是可行的。建立了带有外部谐振器镜的波导样品的简单激光设置。

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