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Substructure of high-power stimulated emission pulses from a fiber laser

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© 1979 American Institute of Physics
, , Citation Sh Sh Gvatua et al 1979 Sov. J. Quantum Electron. 9 518 DOI 10.1070/QE1979v009n04ABEH008929

0049-1748/9/4/518

Abstract

It is demonstrated experimentally that an individual spike in a regular series of intensity pulsations from a glass-fiber laser having a core doped with neodymium ions, consists of a train of short pulses having a duration of 2–8 nsec and a period of ∼15 nsec. The spectrum of stimulated emission from a fiber laser with a total half-width Δλ ≲ 1.8–5.6 nm, governed by the pump energy, takes the form of discrete narrow lines with the half-width Δλ ≤ 0.075–0.3 Å. This character of the stimulated emission is attributed to the self-mode-locking in a fiber laser due to the effect, at the emission wavelength of λ=1.06μ, of short-lived color centers which are produced in the glass by the ultraviolet part of the pump radiation spectrum.

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10.1070/QE1979v009n04ABEH008929