The study deals with optical elements formed on layers of liquid photopolymerizing compositions. The work is aimed at development of new mechanisms of relief formation in layers of liquid photopolymerizing compositions allowing to form an optically smooth microrelief for diffraction optical elements - focusers operating in medium and far IR-band; studying a new mechanism of relief formation. An effect of formation and dark growth of a relief in layers of partially hardened oligoetheracrilates after preliminary irradiation by a light field with a space gradient of intensity is first revealed. Based on the developed liquid photopolymerizing composition high-quality focusers with optically smooth permanently variable microrelief profile for CO...
A wide range of chemical compositions are possible to design photopolymers. These materials are also...
The aim of the work is development of multi-layer protective-brightening up coatings for optical pro...
L’objectif de cette thèse est de développer un nouveau matériau photopolymère pouvant être microstru...
The use of a self-processing dry photopolymer layer capable of memorizing optical information as a ...
The use of a self-processing dry photopolymer layer capable of memorizing optical information as a ...
The object of investigation: the elements of optical and electronic systems (protective, lightening ...
Reactive liquid crystal (LC) mesogen (trade mark C6M of Merck) is shown to possess efficient relief ...
Micro-stereolithography technology has made it possible to fabricate freeform three-dimensional micr...
New results are presented for laser formation—in particular, the “drawing” of microstructures in pol...
The appearance of the ultrashort laser pulses opens up new possibilities in the materials processing...
The fabrication of refractive microlenses with self-developing photopolymers is reported. A spatial...
The fabrication of refractive microlenses with self-developing photopolymers is reported. A spatial...
Subject of investigation: surface periodic structures and diffraction gratings. Purpose of the work:...
The fabrication of refractive microlenses with self-developing photopolymers is reported. A spatial...
AbstractDiffractive Optical Element (DOE) can be used to simplify optical systems such as lightening...
A wide range of chemical compositions are possible to design photopolymers. These materials are also...
The aim of the work is development of multi-layer protective-brightening up coatings for optical pro...
L’objectif de cette thèse est de développer un nouveau matériau photopolymère pouvant être microstru...
The use of a self-processing dry photopolymer layer capable of memorizing optical information as a ...
The use of a self-processing dry photopolymer layer capable of memorizing optical information as a ...
The object of investigation: the elements of optical and electronic systems (protective, lightening ...
Reactive liquid crystal (LC) mesogen (trade mark C6M of Merck) is shown to possess efficient relief ...
Micro-stereolithography technology has made it possible to fabricate freeform three-dimensional micr...
New results are presented for laser formation—in particular, the “drawing” of microstructures in pol...
The appearance of the ultrashort laser pulses opens up new possibilities in the materials processing...
The fabrication of refractive microlenses with self-developing photopolymers is reported. A spatial...
The fabrication of refractive microlenses with self-developing photopolymers is reported. A spatial...
Subject of investigation: surface periodic structures and diffraction gratings. Purpose of the work:...
The fabrication of refractive microlenses with self-developing photopolymers is reported. A spatial...
AbstractDiffractive Optical Element (DOE) can be used to simplify optical systems such as lightening...
A wide range of chemical compositions are possible to design photopolymers. These materials are also...
The aim of the work is development of multi-layer protective-brightening up coatings for optical pro...
L’objectif de cette thèse est de développer un nouveau matériau photopolymère pouvant être microstru...