We report on quasi-phase-matched frequency doubling to the blue in electric-field poled optical fibres. An increase of a factor of ~10 in the conversion efficiency in comparison with the previous results is obtained. Our experiments show that the structure of the induced nonlinear grating is not uniform, both longitudinally and transversely. For this reason the value of the effective nonlinear coefficient is still far from the optimum expected from the measured value, through Maker's oscillation, for a uniformly poled fibre
A second-order nonlinearity is induced for the first time in a holey fibre by thermal poling. Non-ph...
The impact of transient and steady-state thermal effects on the conversion efficiency of quasi-phase...
Optical fibres have been used to sense many different physical quantities (magnetic fields, vibratio...
Electric field poling of silica glass provides the prospect of efficient second-order nonlinear inte...
Periodic thermal poling of fibers is a promising technique for efficient quasi-phase-matched second-...
Periodically patterned second-order nonlinearities are created in optical fibers by thermal poling i...
Electric field poling of silica glass provides the prospect of efficient second-order nonlinear inte...
We induce a permanent second-order non-linearity in phosphorus and germania doped optical fibres via...
A permanent second-order non-linearity is induced in a phosphorus and germania doped optical fibre v...
Second-order nonlinear gratings in optical fibres have been produced for efficient quasi-phase-match...
Recent advances in silica fibres exhibiting second-order optical nonlinearities as a result of both ...
D-shape silica fibres have been periodically poled at elevated temperature by applying high voltage ...
It has recently been shown that large second-order nonlinearities may be induced in optical fibres b...
Second-order nonlinear susceptibility gratings are induced in optical fibers by mode interference of...
It is now well known that high-intensity light may be used to write second-order non-linear gratings...
A second-order nonlinearity is induced for the first time in a holey fibre by thermal poling. Non-ph...
The impact of transient and steady-state thermal effects on the conversion efficiency of quasi-phase...
Optical fibres have been used to sense many different physical quantities (magnetic fields, vibratio...
Electric field poling of silica glass provides the prospect of efficient second-order nonlinear inte...
Periodic thermal poling of fibers is a promising technique for efficient quasi-phase-matched second-...
Periodically patterned second-order nonlinearities are created in optical fibers by thermal poling i...
Electric field poling of silica glass provides the prospect of efficient second-order nonlinear inte...
We induce a permanent second-order non-linearity in phosphorus and germania doped optical fibres via...
A permanent second-order non-linearity is induced in a phosphorus and germania doped optical fibre v...
Second-order nonlinear gratings in optical fibres have been produced for efficient quasi-phase-match...
Recent advances in silica fibres exhibiting second-order optical nonlinearities as a result of both ...
D-shape silica fibres have been periodically poled at elevated temperature by applying high voltage ...
It has recently been shown that large second-order nonlinearities may be induced in optical fibres b...
Second-order nonlinear susceptibility gratings are induced in optical fibers by mode interference of...
It is now well known that high-intensity light may be used to write second-order non-linear gratings...
A second-order nonlinearity is induced for the first time in a holey fibre by thermal poling. Non-ph...
The impact of transient and steady-state thermal effects on the conversion efficiency of quasi-phase...
Optical fibres have been used to sense many different physical quantities (magnetic fields, vibratio...