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基于多模铋掺杂渐变折射率光纤的E波段和S波段包层泵浦激光器及放大器:迈向“瓦级”输出功率

Cladding-pumped laser and amplifier for E- and S-bands based on multimode bismuth-doped graded-index fibers: toward "watt-level" output power.

作者信息

Vakhrushev Alexander, Umnikov Andrey, Dostovalov Alexander, Riumkin Konstantin, Alyshev Sergey, Firstova Elena, Khegai Aleksandr, Melkumov Mikhail, Babin Sergey, Firstov Sergei

出版信息

Opt Lett. 2024 Apr 1;49(7):1828-1831. doi: 10.1364/OL.514236.

DOI:10.1364/OL.514236
PMID:38560875
Abstract

In this Letter, we investigated the potential scalability of output power of a cladding-pumped laser and a power amplifier (booster) based on a multimode Bi-doped fiber (BDF) using the mode-selection approach. We fabricated the multimode double-clad graded-index (GRIN) fiber with a confined Bi-doped germanosilicate glass core with a diameter of ≈30 and ≈60 µm. Using femtosecond (fs) inscription technology with high spatial resolution, Bragg gratings of a special transverse structure allowing the selection of low-order modes were written into the core of BDFs. The operation features of the cladding-pumped multimode bismuth-doped GRIN fiber lasers with the inscribed Bragg gratings with various reflection coefficients were investigated. In addition, the behavior of the output power and the beam quality (M parameter) of the optical radiation of the developed devices was studied. The CW laser and booster operating at nearly 1.45 µm with maximum output powers of ≈0.8 and ≈1 W, respectively, based on the 60-µm-core BDF under pumping by multimode laser diodes at 808 nm were developed, which are, to the best of our knowledge, the most powerful cladding-pumped BDF devices to date. Near single-mode lasing (M <1.3) is demonstrated for a 30-µm-core fiber. The experimental data open new possibilities to achieve higher powers in cladding-pumped BDF sources, which are more cost-effective compared to core-pumped counterparts.

摘要

在本信函中,我们使用模式选择方法研究了基于多模双掺杂光纤(BDF)的包层泵浦激光器和功率放大器(增强器)输出功率的潜在可扩展性。我们制造了一种多模双包层渐变折射率(GRIN)光纤,其掺杂铋的锗酸盐玻璃纤芯直径约为30和60 µm。利用具有高空间分辨率的飞秒(fs)写入技术,将具有特殊横向结构、可选择低阶模式的布拉格光栅写入BDF的纤芯中。研究了具有不同反射系数的刻写布拉格光栅的包层泵浦多模铋掺杂GRIN光纤激光器的运行特性。此外,还研究了所开发器件的光辐射输出功率和光束质量(M参数)的行为。基于60 µm纤芯的BDF,在808 nm多模激光二极管泵浦下,分别开发出了连续波激光器和增强器,其最大输出功率分别约为0.8 W和1 W,据我们所知,这是迄今为止功率最高的包层泵浦BDF器件。对于30 µm纤芯的光纤,实现了近单模激光振荡(M<1.3)。实验数据为在包层泵浦BDF光源中实现更高功率开辟了新的可能性,与纤芯泵浦的同类光源相比,这种光源更具成本效益。

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