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Waveguide Tm:Lu2O3 ceramic laser fabricated by ultrafast laser inscription

机译:超快激光刻写制造波导Tm:Lu 2 O 3 陶瓷激光器

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摘要

Summary form only given. Ultrafast laser inscription (ULI) allows the fabrication of compact, highly-efficient and robust laser sources over a broad range of crystalline, ceramic and glass gain media. For instance, subsurface waveguides can be formed by the stress induced refractive index modification effect which takes place between two parallel modified regions referred to as “Type II” guiding [1]. Previously, a family of laser hosts known as sesquioxides, namely LuO, ScO and LuScO, have been shown to demonstrate efficient, high-power and tunable laser operation around the 2 μm region in both continuous-wave and pulsed regimes when doped with Tm+ [2, 3]. Combining the Tm-doped sesquioxide material properties with the ULI waveguide laser geometry provides a means to produce compact, low-threshold and efficient laser sources near 2 μm with the potential for high pulse repetition rate ultrafast operation. Here we report, to the best of our knowledge, the first demonstration of a ceramic Tm:LuO waveguide laser source fabricated by ULI.
机译:仅提供摘要表格。超快激光刻印(ULI)可以在广泛的晶体,陶瓷和玻璃增益介质上制造紧凑,高效且坚固的激光源。例如,地下波导可以通过应力诱导的折射率修改效应来形成,该效应在称为“ II型”波导[1]的两个平行修改区域之间发生。以前,已经显示了一系列被称为倍半氧化物的激光宿主,即LuO,ScO和LuScO,当掺杂Tm +时,它们可以在连续波和脉冲状态下在2μm区域附近证明高效,高功率且可调谐的激光操作[ 2、3]。将掺有Tm的倍半氧化物材料的特性与ULI波导激光器的几何形状相结合,提供了一种生产2μm附近的紧凑,低阈值且高效的激光源的方法,具有实现高脉冲重复率超快操作的潜力。据我们所知,这里我们首次报道了由ULI制造的陶瓷Tm:LuO波导激光源。

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