Data di Pubblicazione:
2013
Abstract:
We report investigation on passively mode-locked picosecond Ytterbium doped fiber laser with repetition rate close to 1 MHz. Mode-locking operation is induced by a butt-coupled semiconductor saturable absorber mirror (SESAM) and stabilized in the normal dispersion regime by means of the spectral filtering of a narrow bandwidth (" 0.1 nm) fiber Bragg grating (FBG). Pulse duration of about 50 ps with maximum output power of 20 mW at 1064 nm were achieved after amplification in a double pass fiber pre-amplifier. This compact and reliable all-fiber laser operating at 1064 nm is intended to seed bulk amplifiers in a hybrid fiber/solid-state
configuration. Employing a two-stages Nd:YVO4 amplifier, we obtained about 10 W average output power well preserving both the quasi-diffraction limited beam quality and spectral purity of the seeder.Second harmonic
generation (SHG) with 50% conversion efficiency was demonstrated in type-II KTP and type-I angle phase
matched LBO crystal. Furthermore, a space independent numerical model was developed in order to study the
dependence of intracavity pulse energy on the main design parameters of the master oscillator (cavity length,
FBG bandwidth, SESAM modulation depth) within the stability range (single pulse per round-trip in CW mode-locking operation) of the fiber laser master oscillator.
configuration. Employing a two-stages Nd:YVO4 amplifier, we obtained about 10 W average output power well preserving both the quasi-diffraction limited beam quality and spectral purity of the seeder.Second harmonic
generation (SHG) with 50% conversion efficiency was demonstrated in type-II KTP and type-I angle phase
matched LBO crystal. Furthermore, a space independent numerical model was developed in order to study the
dependence of intracavity pulse energy on the main design parameters of the master oscillator (cavity length,
FBG bandwidth, SESAM modulation depth) within the stability range (single pulse per round-trip in CW mode-locking operation) of the fiber laser master oscillator.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
SOLID STATE LASERS; FIBER LASER; LASER AMPLIFIERS; PICOSECOND PULSES
Elenco autori:
Agnesi, Antoniangelo; Carra', Luca; Pirzio, Federico; Piccoli, Riccardo; Reali, Giancarlo
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