Direct generation of 2  W average-power and 232  nJ picosecond pulses from an ultra-simple Yb-doped double-clad fiber laser

Optics Letters
Yizhong HuangHongyan Fu

Abstract

We report the generation of 2.06 W average-power and 232 nJ picosecond mode-locked pulses directly from an ultra-simple Yb-doped fiber laser. A section of Yb-doped double-clad fiber pumped by a 976 nm laser diode provides the large gain, and the linear cavity is simply formed by a 1064 nm highly reflective fiber Bragg grating and a fiber loop mirror (FLM) using a 5/95 optical coupler. The asymmetric FLM not only acts as the output mirror for providing ∼20% optical feedback, but also equivalently behaves as a nonlinear optical loop mirror (NOLM) to initiate the mode-locking operation in this cavity. Stable mode-locking is therefore achieved over a pump power of 3.76 W. The mode-locked pulses show the dissipative soliton resonance (DSR), which has the pulse duration of 695 ps to ∼1  ns, and the almost unchanged peak power of ∼200  W as increasing the pump power. In particular, this laser can emit 232 nJ high-energy DSR pulses with an average output power of >2  W. This is, to the best of our knowledge, the first demonstration of such an ultra-simple, mode-locked fiber laser that enables watt-level, high energy, picosecond DSR pulses.

References

Jul 13, 2004·Physical Review Letters·F O IldayF W Wise
Aug 19, 2007·Optics Letters·Andy ChongFrank W Wise
Dec 10, 2008·Optics Express·Frithjof HaxsenDietmar Kracht
Jan 1, 1988·Optics Letters·N J Doran, D Wood
Nov 3, 2010·Optics Letters·Zhengqian LuoZhiping Cai
Apr 12, 2011·Optics Letters·Edwin DingJ Nathan Kutz

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