FIELD: physics.
SUBSTANCE: device for producing an integrated optical waveguide structure in an optically transparent sample with a refractive index n1, including a three-dimensional system of moving the sample to be treated, an electronic control unit, a CCD camera, a piezoelectric deflector, a lens, at least, one first laser radiation source to be created by the method of multi-photon polymerization in places of waveguide crossing with the ends of the sample terminals projecting from the surface of the sample ends. Herewith the device comprises, at least, one second source of femtosecond laser radiation, optical elements for focusing the laser radiation at printing inside the sample of, at least, one waveguide with the refractive index n2 (n2>n1).
EFFECT: increaseing the eigenmode pairing quality of integrated optical waveguide structures and optical fibers.
4 cl, 5 dwg
Title | Year | Author | Number |
---|---|---|---|
METHOD OF CREATING REFRACTION INDEX STRUCTURES INSIDE A SAMPLE FROM TRANSPARENT MATERIAL AND A DEVICE FOR ITS IMPLEMENTATION | 2019 |
|
RU2726738C1 |
METHOD FOR LASER RECORDING OF INTEGRAL WAVEGUIDES | 2021 |
|
RU2781465C1 |
METHOD FOR SPACE-SELECTIVE CRYSTALLISATION OF GLASS | 2015 |
|
RU2616958C1 |
METHOD OF PRODUCING THREE-DIMENSIONAL OPTICAL MICROSTRUCTURES WITH REFRACTION INDEX GRADIENT USING TWO-PHOTON LITHOGRAPHY | 2023 |
|
RU2826645C1 |
METHOD FOR PRODUCING A SINGLE-MODE WAVEGUIDE | 2016 |
|
RU2647207C1 |
METHOD OF MANUFACTURING DIVIDER IN INTEGRAL OPTICAL SCHEME | 2017 |
|
RU2675400C1 |
DEVICE FOR CREATION OF PERIODIC STRUCTURES OF REFRACTION INDEX INSIDE TRANSPARENT MATERIALS | 2018 |
|
RU2695286C1 |
WAVEGUIDES BENDS CREATION METHOD | 2017 |
|
RU2655992C1 |
METHOD FOR LOCAL CRYSTALLISATION OF LANTHANUM BOROGERMANATE GLASS | 2014 |
|
RU2579080C1 |
METHOD FOR MANUFACTURING OF SINGLE-MODE LIGHT GUIDE CHANNEL IN TRANSPARENT DIELECTRIC BY MEANS OF MODULATION OF DIELECTRIC STRUCTURE | 1999 |
|
RU2150135C1 |
Authors
Dates
2017-04-25—Published
2015-10-02—Filed