Published January 1, 2017 | Version v1
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175 fs-long pulses from a high-power single-mode Er-doped fiber laser at 1550 nm

  • 1. Bilkent Univ, Dept Phys, TR-06800 Ankara, Turkey

Description

Development of Er-doped ultrafast lasers have lagged behind the corresponding developments in Yb- and Tm-doped lasers, in particular, fiber lasers. Various applications benefit from operation at a central wavelength of 1.5 mu m and its second harmonic, including emerging applications such as 3D processing of silicon and 3D printing based on two-photon polymerization. We report a simple, robust fiber master oscillator power amplifier operating at 1.55 mu m, implementing chirp pulse amplification using single-mode fibers for diffraction-limited beam quality. The laser generates 80 nJ pulses at a repetition rate of 43 MHz, corresponding to an average power of 3.5 W, which can be compressed down to 175 fs. The generation of short pulses was achieved using a design which is guided by numerical simulations of pulse propagation and amplification and manages to overturn gain narrowing with self-phase modulation, without invoking excessive Raman scattering processes. The seed source for the two-stage amplifier is a dispersion-managed passively mode-locked oscillator, which generates a similar to 40 nm-wide spectrum and 1.7-ps linearly chirped pulses. (C) 2017 Elsevier B.V. All rights reserved.

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