We demonstrate a simple technique to create a large number of arbitrary optical structures in photorefractive Fe-doped lithium niobate (Fe:LN). The technique consists in directly writing with a focused laser beam at visible wavelength the desired optical structures on a sample, taking advantage of the photorefractive effect. Using a computer-controlled translation stage, arbitrary 1D patterns can be recorded allowing diffraction gratings or waveguide arrays to be realized. In contrast to other laser-writing approaches, our method exploits solely the large photorefractive sensitivity of Fe:LN as the mechanism to induce the refractive index change. Thanks to this, commonly available, low power cw lasers are sufficient to obtain the des...
Lithium niobate is a versatile optical material with many applications that result from its wide ran...
In the field of optical signal processing and all-optical integrated devices, photorefractive crysta...
We analyze the mechanisms leading to a highly diffractive fixed hologram in photorefractive Fe-doped...
We demonstrate a simple technique to create a large number of arbitrary optical structures in phot...
Versatility of femtosecond direct laser writing (DLW) technique for non-destructive and reversible m...
International audienceWe report 2D micrometric scale regular optical patterns formation induced by a...
After the discovery that focused laser pulse is capable to locally change material's refractive inde...
After the discovery that focused laser pulse is capable to locally change material's refractive inde...
We present light induced refractive index changes in iron doped lithium niobate detected with a nove...
A new approach for obtaining in short time highly efficient photorefractive holographic gratings in ...
Local doping by Fe in-diffusion in lithium niobate is a powerful technique to create regions of high...
Two collimated laser beams, wavelength O-514 μm are overlapped within a crystal of heavily iron dope...
We analyse the feasibility of using iron-doping in lithium niobate in order to stabilize and permane...
This work is funded by Volkswagen Foundation/Trilateral Project “Investigation of the domain wall co...
In iron-doped lithium niobate and other similar crystals, exposure to light of appropriate wavelengt...
Lithium niobate is a versatile optical material with many applications that result from its wide ran...
In the field of optical signal processing and all-optical integrated devices, photorefractive crysta...
We analyze the mechanisms leading to a highly diffractive fixed hologram in photorefractive Fe-doped...
We demonstrate a simple technique to create a large number of arbitrary optical structures in phot...
Versatility of femtosecond direct laser writing (DLW) technique for non-destructive and reversible m...
International audienceWe report 2D micrometric scale regular optical patterns formation induced by a...
After the discovery that focused laser pulse is capable to locally change material's refractive inde...
After the discovery that focused laser pulse is capable to locally change material's refractive inde...
We present light induced refractive index changes in iron doped lithium niobate detected with a nove...
A new approach for obtaining in short time highly efficient photorefractive holographic gratings in ...
Local doping by Fe in-diffusion in lithium niobate is a powerful technique to create regions of high...
Two collimated laser beams, wavelength O-514 μm are overlapped within a crystal of heavily iron dope...
We analyse the feasibility of using iron-doping in lithium niobate in order to stabilize and permane...
This work is funded by Volkswagen Foundation/Trilateral Project “Investigation of the domain wall co...
In iron-doped lithium niobate and other similar crystals, exposure to light of appropriate wavelengt...
Lithium niobate is a versatile optical material with many applications that result from its wide ran...
In the field of optical signal processing and all-optical integrated devices, photorefractive crysta...
We analyze the mechanisms leading to a highly diffractive fixed hologram in photorefractive Fe-doped...