
Fabrication of planar optical waveguides by electrical microcontact
We designed, fabri-cated, and characterized straight and curved waveguides, and an optical power splitter. The planar geometries of the waveguides produced by E- CP can be arbitrary in design, i.e.,
Planar Waveguides
As photonics technology continues to evolve, planar waveguides are likely to remain a key component, driving innovations in optical communications, sensing, and
Thermoforming of planar polymer optical waveguides for integrated
The processing of planar integrated polymer optical systems for use in the packaging industry described in this work is based on the planar fabrication process investigated in the DFG research group
Enabling the Metaverse through mass manufacturing of industry
cturing of optical waveguides with relief gratings and replication on an array of glass substrates. Our objectiv is not to present the best performing, most or smallest form factor AR optical waveguide
Optical waveguide device and manufacturing method thereof
The present invention relates to an optical waveguide device which is widely used for optical communications, optical information processing and other general optics, and to a method of
Waveguide-based optical scanning systems
Another optical bio-analysis method is waveguide based bio-sensors. Bio-sensing based on waveguides has been around for a while. These biosensors can be divided into three main categories. The first
Low loss broadband fiber coupler to optical waveguide
BACKGROUND OF THE INVENTION Waveguides and optical fibers are important components of optical communication systems. Waveguides, such as optical planar waveguides, are used in various
5. Planar Waveguides
5.1 Materials for Waveguide Structures A comprehensive overview of polymer materials for the manufacture of optical waveguides is presented in the dissertation (, Table 5.1). In addition to
Production of an optical waveguide in planar glass substrate fabricated
While Bragg gratings are routinely patterned within optical fibers using the point-by-point or line-by-line technique, the objective of our work is to produce Bragg grating sensors within planar glass
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