Three-dimensional, permanent anisotropic modifications in glass containing spherical Ag nanoparticles are demonstrated using multicolor fs laser irradiation. The method can produce dichroism by deformation of nanoparticles to oblong shapes oriented parallel to the laser polarization. Using samples with a vertical gradient of the fill factor of Ag nanoparticles in the glass substrate and an accordingly inhomogeneous broadening of the surface plasmon band, modifications in various depths can be made using different excitation wavelengths. The induced modifications are reversible: heating to approximate to 600 degrees C restores the spherical shape of Ag nanoparticles. This technique could be used in manufacturing of different, 3D, polarizatio...
This thesis is focused on ultrafast laser induced modification in optical materials including transp...
Glasses containing embedded metallic nanoparticles (metal-glass nanocomposites) exhibit peculiar lin...
Summary form only given. Modification of silver nanoparticles embedded in a glass substrate with fem...
Three-dimensional, permanent anisotropic modifications in glass containing spherical Ag nanoparticle...
By irradiating glass containing spherical Ag nanoparticles successively with fs laser pulses at diff...
Abstract Bimetallic, initially spherical Ag/Au nanoparticles in glass prepared by ion implantation h...
Deforming metal nanoparticles in glass by femtosecond laser pulses, 3-dimensional dichroitic microst...
Glass containing spherical silver nanoparticles has been irradiated with single, intense, ultrashort...
We investigate the possibility of preparation of laser-induced dichroism in composite glasses with a...
Irradiation of the composite glass containing spherical Ag nanoparticles by intense polarized fs las...
Modification on silver nanoparticles (AgNPs) is of interest for various nonlinear optics application...
We studied a femtosecond laser shaping of silver nanoparticles embedded in soda-lime glass. Comparin...
Three-dimensional patterning of metal-dielectric composites is achieved at the sub-micrometer scale ...
Precipitation of silver nanoparticles (Ag-NPs) can occur in a silver-doped lanthanum borogermanate g...
Glasses containing metallic nanoparticles exhibit very promising linear and nonlinear optical proper...
This thesis is focused on ultrafast laser induced modification in optical materials including transp...
Glasses containing embedded metallic nanoparticles (metal-glass nanocomposites) exhibit peculiar lin...
Summary form only given. Modification of silver nanoparticles embedded in a glass substrate with fem...
Three-dimensional, permanent anisotropic modifications in glass containing spherical Ag nanoparticle...
By irradiating glass containing spherical Ag nanoparticles successively with fs laser pulses at diff...
Abstract Bimetallic, initially spherical Ag/Au nanoparticles in glass prepared by ion implantation h...
Deforming metal nanoparticles in glass by femtosecond laser pulses, 3-dimensional dichroitic microst...
Glass containing spherical silver nanoparticles has been irradiated with single, intense, ultrashort...
We investigate the possibility of preparation of laser-induced dichroism in composite glasses with a...
Irradiation of the composite glass containing spherical Ag nanoparticles by intense polarized fs las...
Modification on silver nanoparticles (AgNPs) is of interest for various nonlinear optics application...
We studied a femtosecond laser shaping of silver nanoparticles embedded in soda-lime glass. Comparin...
Three-dimensional patterning of metal-dielectric composites is achieved at the sub-micrometer scale ...
Precipitation of silver nanoparticles (Ag-NPs) can occur in a silver-doped lanthanum borogermanate g...
Glasses containing metallic nanoparticles exhibit very promising linear and nonlinear optical proper...
This thesis is focused on ultrafast laser induced modification in optical materials including transp...
Glasses containing embedded metallic nanoparticles (metal-glass nanocomposites) exhibit peculiar lin...
Summary form only given. Modification of silver nanoparticles embedded in a glass substrate with fem...