In the last decades the electronic data transmission technology has progressively reached its performance limits and it is nowadays evident that further advances can be achieved only by all-optical signal processing systems. Thus the research in nonlinear optics have been rapidly expanding in the last twenty years, developing many applications of photonics which are now relevant for industrial and consumer markets. In particular, in electro-optic materials the phenomena based on the photorefractive effect are doubtless playing a major role in the building up of optoelectronic signal transmission and processing devices and lithium niobate (LiNbO3) is a promising material due to its high electro-optic and nonlinear optical coefficients. Moreo...
Exposure of the insulating ferroelectric crystal, lithium niobate, to light of the appropriate wavel...
Iron-doped lithium niobate crystals attract great attention for practical applications such as holog...
Because of their electro-optical, non-linear optical and photorefractive effet, lithium niobate crys...
In the last decades the electronic data transmission technology has progressively reached its perfor...
In the field of optical signal processing and all-optical integrated devices, photorefractive crysta...
Thermal diffusion from thin film is one of the most widespread approaches to prepare iron doped regi...
Lithium niobate (LN) is attractive material for the frequency mixers and doublers, integrated optica...
Iron doping of lithium niobate crystals by thermal diffusion is a well-established technique for the...
Local doping by Fe in-diffusion in lithium niobate is a powerful technique to create regions of high...
Lithium niobate LiNbO3 (LN) is an excellent material for various applications in particular thanks t...
Lithium Niobate is an optical material used in many applications in optoelectronics through its elec...
Le niobate de lithium LiNbO3 (LN) est un excellent matériau pour diverses applications en raison de ...
We analyse the feasibility of using iron-doping in lithium niobate in order to stabilize and permane...
International audienceIron-doped lithium niobate crystals attract great attention for practical appl...
Exposure of the insulating ferroelectric crystal, lithium niobate, to light of the appropriate wavel...
Iron-doped lithium niobate crystals attract great attention for practical applications such as holog...
Because of their electro-optical, non-linear optical and photorefractive effet, lithium niobate crys...
In the last decades the electronic data transmission technology has progressively reached its perfor...
In the field of optical signal processing and all-optical integrated devices, photorefractive crysta...
Thermal diffusion from thin film is one of the most widespread approaches to prepare iron doped regi...
Lithium niobate (LN) is attractive material for the frequency mixers and doublers, integrated optica...
Iron doping of lithium niobate crystals by thermal diffusion is a well-established technique for the...
Local doping by Fe in-diffusion in lithium niobate is a powerful technique to create regions of high...
Lithium niobate LiNbO3 (LN) is an excellent material for various applications in particular thanks t...
Lithium Niobate is an optical material used in many applications in optoelectronics through its elec...
Le niobate de lithium LiNbO3 (LN) est un excellent matériau pour diverses applications en raison de ...
We analyse the feasibility of using iron-doping in lithium niobate in order to stabilize and permane...
International audienceIron-doped lithium niobate crystals attract great attention for practical appl...
Exposure of the insulating ferroelectric crystal, lithium niobate, to light of the appropriate wavel...
Iron-doped lithium niobate crystals attract great attention for practical applications such as holog...
Because of their electro-optical, non-linear optical and photorefractive effet, lithium niobate crys...