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109 W Yb:YAl3(B03)4 thin-disk oscillator

机译:109 W Yb:YAl3(B03)4薄盘振荡器

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In this contribution, we report on what we believe to be the first demonstration of an Yb:YAl3(BO3)4 (Yb:YAB) thin-disk laser. Due to its broad gain bandwidth of >40 nm (σ- polarization), Yb:YAB offers the potential for generating ultrafast laser pulses with sub-100-fs durations [1]; the thin-disk geometry should allow to scale the average power of such pulses beyond the 100 W range. For these experiments, Yb:YAB boule material with a doping concentration of 12 % was polished to a disk with a diameter of 6.3 mm and a thickness of 250 μm. The thin-disk crystal was glued with its HR coated backside on a copper heat sink. Although the Yb YAB crystal was damaged during the mounting process, an usable optical aperture of the disk of up to 3 mm remained. For this reason pump spot diameters of 2.3 and 2.6 mm were selected for the high power laser experiments. A fiber-coupled laser diode (core diameter 600 μm, NA. 0.22) at a central wavelength of 976 nm emitting up to 1 kW of power was utilized as the pump source. In order to guarantee sufficient pump light absorption, a pump module allowing 24 passes of the pump radiation through the thin-disk was chosen. During laser operation the thin-disk crystal was efficiently cooled by an impingement cooling operated at a water temperature of 15 °C. Prior to the high power experiments a thermal characterization of this thin-disk crystal with a thermal-imaging camera was performed. The temperature of the front side of the crystal was measured both during fluorescence and laser operation. For a pump power density of 2.7 kW/cm
机译:在此贡献中,我们报告了我们认为是Yb:YAl3(BO3)4(Yb:YAB)薄盘激光器的首次演示。由于其宽的增益带宽> 40 nm(σ极化),Yb:YAB具有产生持续时间小于100 fs的超快激光脉冲的潜力[1];因此,Yb:YAB具有产生超快激光脉冲的潜力。薄磁盘的几何形状应允许将此类脉冲的平均功率缩放到100 W以上的范围。对于这些实验,将掺杂浓度为12%的Yb:YAB晶锭材料抛光成直径为6.3 mm,厚度为250μm的圆盘。将薄盘晶体的HR涂层背面粘在铜散热器上。尽管在安装过程中损坏了Yb YAB晶体,但仍保留了高达3 mm的光盘可用光学孔径。因此,为高功率激光实验选择了2.3和2.6 mm的泵浦光斑直径。中心波长为976 nm的光纤耦合激光二极管(中心直径为600μm,NA。0.22)发射的功率高达1 kW,被用作泵浦源。为了保证足够的泵浦光吸收,选择了允许泵浦辐射通过薄盘的24个泵浦模块。在激光操作过程中,薄盘晶体通过在15°C的水温下运行的冲击冷却而得到有效冷却。在大功率实验之前,已使用热成像相机对这种薄盘晶体进行了热表征。在荧光和激光操作过程中都测量了晶体正面的温度。对于2.7 kW / cm的泵功率密度

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