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Efficient ytterbium-doped phosphosilicate double-clad leakage-channel-fiber laser at 1008-1020 nm

机译:高效的YTTerbium掺杂磷酸盐双包层泄漏通道 - 光纤激光器在1008-1020 nm

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Thermal management is critical for kw-level power lasers, where mode instability driven by quantum defect heating is a major challenge. Tandem pumping using 1018nm fiber lasers are used to enable both high brightness and low quantum defect. It is, however, difficult to realize efficient 1018nm YDFL. The best demonstration to date is limited by the use of both conventional aluminosilicate host and smaller core diameters. In these cases, higher inversion is required due to the aluminosilicate host and higher pump brightness is required due to the smaller core, which results in high signal brightness for the same output power. These factors lead to large pump power to exit fiber, resulting in poor efficiency. Phosphosilicate host, on the other hand, requires much lower inversions to reach the gain threshold at 1018nm. The combination of phosphosilicate host and large-core leakage channel fibers (LCF) is a perfect candidate for efficient 1018nm fiber laser. We report a highly efficient Yb-doped phosphosilicate LCF laser with a quantum defect of 4.1% using a ~50μm-core diameter and ~420μm cladding diameter. The slope efficiency with respect to the launched pump power at 1018nm is 70%. The ASE suppression is >60dB. The large cladding of 420μm demonstrates a combination of high efficiency, ~4% quantum defect and high-power low-brightness diode pumping. We have also studied the limits of operating ytterbium fiber lasers at shorter wavelengths and found the efficiency to fall off at shorter wavelengths due to the much higher inversions required.
机译:热管理对于KW级电力激光器至关重要,其中由量子缺陷加热驱动的模式不稳定是一项重大挑战。使用1018nm光纤激光器的串联泵送用于实现高亮度和低量子缺陷。然而,难以实现高效的1018nm ydfl。迄今为止的最佳示范是限制使用常规铝硅酸盐宿主和较小的芯直径的限制。在这些情况下,由于硅酸盐主机,由于芯的芯,因此需要更高的泵亮度,这导致相同输出功率的高信号亮度,因此需要更高的泵亮度。这些因素导致大型泵电源退出纤维,从而效率差。另一方面,磷酸硅酸盐宿主需要更低的逆转,以在1018nm处达到增益阈值。磷酸硅酸盐宿主和大核泄漏通道纤维(LCF)的组合是高效1018nm光纤激光器的完美候选者。我们通过〜50μm芯直径和〜420μm的包层直径报告了一种高效的Yb掺杂的磷硅酸盐LCF激光器,其量子缺陷为4.1%。相对于1018nm的发射泵功率的斜率效率为70%。 ASE抑制为> 60dB。 420μm的大包层演示了高效率,4%量子缺陷和高功率低亮度二极管泵送的组合。我们还研究了在较短波长下操作YTTerbium光纤激光器的限制,并且由于所需的较高的反转,以更短波长的波长脱落的效率。

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