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High-power photonic crystal fibers

机译:高功率光子晶体光纤

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Fiber lasers deliver excellent beam-quality and high efficiency in a robust and largely maintenance-free format, and are now able to do so with output powers in the kilowatt regime. Consequently, fiber lasers have become an attractive alternative to solid-state and gas lasers for e.g. material processing like welding, cutting and marking. The all-glass air-clad photonic crystal fibers (PCFs) combine large mode-field diameters (currently up to 40 μm), high numerical aperture (typically in the 0.6-0.65 range), high pump absorption (30 dB/m demonstrated in ytterbium) and excellent high-power handling (kW CW and mJ pulses demonstrated). These properties have made this fiber type one of the most promising candidates for the future high-power fiber laser and amplifier systems that are expected to replace many of the traditional systems in use today. To utilize the high numerical aperture and large mode-field diameters of the air-clad PCFs, special care must be taken in the system integration. In this paper, we will show examples of how these fibers can be integrated in laser and amplifier sub-assemblies with standard fiber pump-interfaces for use with single-emitter diodes or diode-bar pump sources. Moreover, we report on the most recent advances in fiber design including rod-type fibers and broadband polarizing ytterbium-doped large-mode-area air-clad fibers. Finally, we will review the latest results on PCF-based amplifier and laser configurations with special focus on high-power CW systems and high-energy pulsed configurations.
机译:光纤激光器以坚固且基本免维护的形式提供出色的光束质量和高效率,并且现在能够以千瓦状态的输出功率来实现。因此,例如,光纤激光器已经成为固态激光器和气体激光器的有吸引力的替代方案。材料加工,例如焊接,切割和打标。全玻璃气包光子晶体光纤(PCF)结合了较大的模场直径(当前最大40μm),高数值孔径(通常在0.6-0.65范围内),高泵浦吸收(30 dB / m,在and)和出色的大功率处理能力(展示了kW CW和mJ脉冲)。这些特性使这种光纤类型成为未来高功率光纤激光器和放大器系统最有希望的候选者之一,有望取代当今使用的许多传统系统。为了利用气密式PCF的高数值孔径和大模场直径,在系统集成时必须格外小心。在本文中,我们将展示如何将这些光纤集成到具有标准光纤泵浦接口的激光和放大器子组件中,以与单发射二极管或二极管-棒状泵浦光源一起使用。此外,我们报告了光纤设计的最新进展,包括杆型光纤和宽带偏振掺大模式区空气包覆光纤。最后,我们将回顾基于PCF的放大器和激光器配置的最新结果,特别关注大功率CW系统和高能脉冲配置。

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