We investigate high-energy pulse amplification in a counter-directionally cladding pumped heavily erbium doped fiber. Despite the quenching, we reach a pulse energy of 0.56 mJ, several times the saturation energy at the 1563-nm signal wavelength
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
We demonstrate a high-energy in-band, cladding-pumped MOPA at 1563nm that is >1.5 times more effi...
We investigate high-energy pulse amplification in a counter-directionally cladding-pumped partly-que...
Assigned DOI is https://doi.org/10.5258/SOTON/D0582 We investigate high-energy pulse amplificatio...
We demonstrate efficient pulse-energy extraction from a partly quenched erbium-doped aluminosilicate...
We demonstrate efficient pulse-energy extraction from a partly quenched erbium-doped aluminosilicate...
This thesis reports an investigation of concentration quenching dynamics in the high-power regime an...
We report what is to our knowledge the first demonstration of pulse amplification in a cw-pumped fib...
ABSTRACT Fiber laser sources, in particular in amplifier configurations, offer very appealing attra...
Femtosecond pulse amplification in a cladding pumped fiber amplifier is demonstrated for the first t...
In this paper we present a novel design of an Er-doped double-clad fiber for short-pulse amplifiers....
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
We demonstrate a high-energy in-band, cladding-pumped MOPA at 1563nm that is >1.5 times more effi...
We investigate high-energy pulse amplification in a counter-directionally cladding-pumped partly-que...
Assigned DOI is https://doi.org/10.5258/SOTON/D0582 We investigate high-energy pulse amplificatio...
We demonstrate efficient pulse-energy extraction from a partly quenched erbium-doped aluminosilicate...
We demonstrate efficient pulse-energy extraction from a partly quenched erbium-doped aluminosilicate...
This thesis reports an investigation of concentration quenching dynamics in the high-power regime an...
We report what is to our knowledge the first demonstration of pulse amplification in a cw-pumped fib...
ABSTRACT Fiber laser sources, in particular in amplifier configurations, offer very appealing attra...
Femtosecond pulse amplification in a cladding pumped fiber amplifier is demonstrated for the first t...
In this paper we present a novel design of an Er-doped double-clad fiber for short-pulse amplifiers....
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
International audienceIn this paper we present a novel design of an Er-doped double-clad fiber for s...
We demonstrate a high-energy in-band, cladding-pumped MOPA at 1563nm that is >1.5 times more effi...