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A controllable noise-like operation regime in a Yb-doped dispersion-mapped fiber ring laser
Journal article   Peer reviewed

A controllable noise-like operation regime in a Yb-doped dispersion-mapped fiber ring laser

A.K. Zaytsev, C.H. Lin, Y.J. You, F.H. Tsai, C.L. Wang and C.L. Pan
Laser Physics Letters, Vol.10(4), 045104
04/2013

Abstract

We report the generation of tunable high-energy noise-like pulses with a super-broadband spectrum from a Yb-doped dispersion-mapped fiber ring laser. Self-starting noise-like operation can be maintained over a relatively large range of pumping powers (4-13 W). The corresponding output power varies from 0.1 to 1.45 W. The maximum 3 dB spectral bandwidth of the noise-like pulses is about 48.2 nm while the output energy is as high as 47 nJ, limited by optical damage of the components. The central wavelength of the noise-like pulses can be tuned easily over ∼12 nm. The bandwidth and duration of the generated wave packets can also be controlled. The use of a negative dispersion-delay line and spectral filter are found to be important for generating such high-power noise-like operation. Experimental results are in good agreement with theoretical simulations. © 2013 Astro Ltd.

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