Ultrashort laser pulses (120-150 fs) of near-ultraviolet (305 nm) to near-infrared (800 nm) wavelengths have been used to optically-assist domain nucleation and growth in lithium niobate. Within illuminated areas, the electric field required for domain nucleation is reduced by up to 41% in undoped and up to 98% in 5-mol% Mg-doped congruently melting materials, allowing direct-writing of inverted domains with electric fields as small as 100 V mm. A first step towards the formation of optically-defined periodically poled lithium niobate was achieved by illumination via a phase mask, demonstrated over small areas with a period of 5.25 microns
We present a technique for domain engineering the surface of lithium niobate crystals with features ...
Continuous wave ultraviolet (UV) laser irradiation at lambda=244 nm on the +z face of undoped and Mg...
Continuous wave ultraviolet laser irradiation at λ = 244 - 305 nm of the +z face of congruent and Mg...
Ultrashort laser pulses (~150-200 fs) of near-ultraviolet (305 nm) to near-infrared (800 nm) wavelen...
We report an order-of-magnitude reduction in the electric field required for domain nucleation in 1 ...
The combination of light with external electric fields has been successfully used for the domain eng...
The influence of illumination on ferroelectric domain engineering in lithium niobate and lithium tan...
The influence of illumination on ferroelectric domain engineering in lithium niobate and lithium tan...
Fabrication of periodically inverted domain patterns in ferroelectric materials such as lithium niob...
We report the light-assisted poling of controllable periodic and arbitrarily-shaped domain patterns ...
The inversion of ferroelectric domains in lithium niobate by a scanning focused ultra-violet laser b...
The thesis is focussing on the interaction of lithium niobate with UV and ultrafast laser radiation ...
We report the generation of sub-micron domains in lithium niobate crystals by irradiating a patterne...
An order of magnitude reduction in the electric field required for ferroelectric domain nucleation i...
We report the formation of directionally-ordered nanoscale surface domains on the +z face of undoped...
We present a technique for domain engineering the surface of lithium niobate crystals with features ...
Continuous wave ultraviolet (UV) laser irradiation at lambda=244 nm on the +z face of undoped and Mg...
Continuous wave ultraviolet laser irradiation at λ = 244 - 305 nm of the +z face of congruent and Mg...
Ultrashort laser pulses (~150-200 fs) of near-ultraviolet (305 nm) to near-infrared (800 nm) wavelen...
We report an order-of-magnitude reduction in the electric field required for domain nucleation in 1 ...
The combination of light with external electric fields has been successfully used for the domain eng...
The influence of illumination on ferroelectric domain engineering in lithium niobate and lithium tan...
The influence of illumination on ferroelectric domain engineering in lithium niobate and lithium tan...
Fabrication of periodically inverted domain patterns in ferroelectric materials such as lithium niob...
We report the light-assisted poling of controllable periodic and arbitrarily-shaped domain patterns ...
The inversion of ferroelectric domains in lithium niobate by a scanning focused ultra-violet laser b...
The thesis is focussing on the interaction of lithium niobate with UV and ultrafast laser radiation ...
We report the generation of sub-micron domains in lithium niobate crystals by irradiating a patterne...
An order of magnitude reduction in the electric field required for ferroelectric domain nucleation i...
We report the formation of directionally-ordered nanoscale surface domains on the +z face of undoped...
We present a technique for domain engineering the surface of lithium niobate crystals with features ...
Continuous wave ultraviolet (UV) laser irradiation at lambda=244 nm on the +z face of undoped and Mg...
Continuous wave ultraviolet laser irradiation at λ = 244 - 305 nm of the +z face of congruent and Mg...