International audienceLocal refractive index changes are the building blocks of laser-induced 3D optical functions in bulk transparent materials, e.g. fused silica. Depending on the regime of interaction, focused ultrashort pulses could induce either positive or negative isotropic smooth refractive index changes (usually denoted as type I) or produce regular nanoscale self-arranging layered structures resulting in form birefringence (type II nanogratings - Fig. 1), a regime which is regularly observed in fused silica [1-3]. Particularly the latter phenomenon is a spectacular and intriguing physical manifestation that allows the development of embedded polarization functions. A spectroscopic study is proposed to reveal the particular electro...
International audienceLaser-induced self-organization of regular nanoscale layered patterns in fused...
International audienceLaser-induced self-organization of regular nanoscale layered patterns in fused...
International audienceLaser-induced self-organization of regular nanoscale layered patterns in fused...
International audienceLocal refractive index changes are the building blocks of laser-induced 3D opt...
International audienceLocal refractive index changes are the building blocks of laser-induced 3D opt...
International audienceLocal refractive index changes are the building blocks of laser-induced 3D opt...
Abstract: Refractive index changes in a-SiO2 consist of positive index variations or regular nanosca...
Refractive index changes in a-SiO2 consist of positive index variations or regular nanoscale pattern...
International audienceRefractive index changes in a-SiO2 consist of positive index variations or reg...
International audienceRefractive index changes in a-SiO2 consist of positive index variations or reg...
International audienceUltrafast laser-induced refractive index changes in a-SiO2 consist, depending ...
International audienceUltrafast laser-induced refractive index changes in a-SiO2 consist, depending ...
International audienceUltrafast laser-induced refractive index changes in a-SiO2 consist, depending ...
Ultrafast laser-induced refractive index changes in a-SiO2 consist, depending on the irradiation con...
Laser-induced self-organization of regular nanoscale layered patterns in fused silica is investigate...
International audienceLaser-induced self-organization of regular nanoscale layered patterns in fused...
International audienceLaser-induced self-organization of regular nanoscale layered patterns in fused...
International audienceLaser-induced self-organization of regular nanoscale layered patterns in fused...
International audienceLocal refractive index changes are the building blocks of laser-induced 3D opt...
International audienceLocal refractive index changes are the building blocks of laser-induced 3D opt...
International audienceLocal refractive index changes are the building blocks of laser-induced 3D opt...
Abstract: Refractive index changes in a-SiO2 consist of positive index variations or regular nanosca...
Refractive index changes in a-SiO2 consist of positive index variations or regular nanoscale pattern...
International audienceRefractive index changes in a-SiO2 consist of positive index variations or reg...
International audienceRefractive index changes in a-SiO2 consist of positive index variations or reg...
International audienceUltrafast laser-induced refractive index changes in a-SiO2 consist, depending ...
International audienceUltrafast laser-induced refractive index changes in a-SiO2 consist, depending ...
International audienceUltrafast laser-induced refractive index changes in a-SiO2 consist, depending ...
Ultrafast laser-induced refractive index changes in a-SiO2 consist, depending on the irradiation con...
Laser-induced self-organization of regular nanoscale layered patterns in fused silica is investigate...
International audienceLaser-induced self-organization of regular nanoscale layered patterns in fused...
International audienceLaser-induced self-organization of regular nanoscale layered patterns in fused...
International audienceLaser-induced self-organization of regular nanoscale layered patterns in fused...