Silica fibers exhibiting high second-order nonlinearities (SON) could be used to develop a new generation of all-fiber electro-optic modulators, switches, tunable filters, and frequency converters. A typical fiber used in our experiments had 0.32 NA, 3-µm core diameter, 125-µm outer diameter, 50-µm hole diameter, and 9-µm interhole spacing
Broadband tunability of the second-harmonic wavelength is achieved in periodically poled silica fibe...
We show that germanium-doped graded-index multimode silica fibers can exhibit relatively high conver...
Second-harmonic generation (SHG) near ultraviolet wavelengths is experimentally demonstrated by coup...
Recent advances in silica fibres exhibiting second-order optical nonlinearities as a result of both ...
The generation of 236 mW of second-harmonic power in a 32-cm-long periodically poled silica fiber, c...
Glass, e.g. silica glass, is one of the dominant materials in information technology because of its ...
The possibility of fabricating all-fiber nonlinear devices based on periodically poled silica fibers...
Record high efficient frequency doublers in periodically poled silica fibres are demonstrated for li...
In the early 80s a series of experiments showed that it was possible to induce second harmonic gener...
D-shape silica fibres have been periodically poled at elevated temperature by applying high voltage ...
Record second-harmonic efficiencies exceeding 20% and parametric fluorescence have been demonstrated...
Electric field poling of silica glass provides the prospect of efficient second-order nonlinear inte...
Electric field poling of silica glass provides the prospect of efficient second-order nonlinear inte...
We report the fabrication of a highly nonlinear, polarization-maintaining, silica holey fiber with a...
The centrosymmetry of amorphous silica can be broken through the technique of thermal poling, whereb...
Broadband tunability of the second-harmonic wavelength is achieved in periodically poled silica fibe...
We show that germanium-doped graded-index multimode silica fibers can exhibit relatively high conver...
Second-harmonic generation (SHG) near ultraviolet wavelengths is experimentally demonstrated by coup...
Recent advances in silica fibres exhibiting second-order optical nonlinearities as a result of both ...
The generation of 236 mW of second-harmonic power in a 32-cm-long periodically poled silica fiber, c...
Glass, e.g. silica glass, is one of the dominant materials in information technology because of its ...
The possibility of fabricating all-fiber nonlinear devices based on periodically poled silica fibers...
Record high efficient frequency doublers in periodically poled silica fibres are demonstrated for li...
In the early 80s a series of experiments showed that it was possible to induce second harmonic gener...
D-shape silica fibres have been periodically poled at elevated temperature by applying high voltage ...
Record second-harmonic efficiencies exceeding 20% and parametric fluorescence have been demonstrated...
Electric field poling of silica glass provides the prospect of efficient second-order nonlinear inte...
Electric field poling of silica glass provides the prospect of efficient second-order nonlinear inte...
We report the fabrication of a highly nonlinear, polarization-maintaining, silica holey fiber with a...
The centrosymmetry of amorphous silica can be broken through the technique of thermal poling, whereb...
Broadband tunability of the second-harmonic wavelength is achieved in periodically poled silica fibe...
We show that germanium-doped graded-index multimode silica fibers can exhibit relatively high conver...
Second-harmonic generation (SHG) near ultraviolet wavelengths is experimentally demonstrated by coup...