Abstract Optical waveguides and integrated optical devices are promising solutions for many applications, such as medical diagnosis, health monitoring and light
Planar Waveguides Waveguides formed on a flat substrate are called planar waveguides. These are typically made by stepwise deposition of films of dielectric materials (typically glass). The waveguide
Optical waveguides represent an integral part of many microphotonic devices ranging from optical amplifiers, optical switches, and ring resonators, to interferometers32.
This chapter reviews planar optical waveguides, which are the key devices to construct integrated optical circuits and semiconductor lasers. Generally, rectangular waveguides consist of a
By confining light to a specific path on a chip or board, planar waveguides allow for the efficient transmission of optical signals between different components.
Two invited papers cover important history and developments of low loss silicon nitride waveguides, the Photonic Damascene process and the TriPleX process.
Abstract Planar lightwave circuits (PLCs) provide various important devices for optical WDM, TDM systems, subscriber networks and etc. This paper reviews the recent progress and future prospects
Fundamentals and Design Guides for Optical Waveguides Abstract Next-generation high-end data processing systems such as Internet switches or servers approach aggregate bandwidth in excess of
With potential mass-production capability for future wide range application, planar waveguide technology is selected as the focus of this dissertation.
Waveguides are spatially inhomogeneous transparent structures for guiding light, often used for obtaining strong light concentration over substantial distances.
For the eigenmode calculation, finite-difference and finite-element methods, mode matching and transfer matrix processes are employed, using which cylindrical
This book provides a comprehensive overview of the theoretical concepts and experimental applications of planar waveguides and other confined geometries,
Optical planar waveguide sensors, able to detect and process information from the environment in a fast, cost-effective, and remote fashion, are
A brief review is presented of the most widely used processes for the fabrication of passive and active glass waveguides. Brilliant prospects of glass
Integrated Planar Waveguides for High Speed Data Communication and Sensing in Space Applications Felix Betschon CEO vario-optics ag
State of the art of most popular passive device-silicon optical waveguide is discussed here. The first wave guiding through the single layer
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
Of the many alternatives available in the F-206''s “toolkit”, we selected the FSA algorithm for the very demanding alignment of the quasi-Gaussian couplings to these waveguide.
Sensing platform based on the integrated optical planar waveguide represents an active research area. The development of optical planar waveguide sensor has largely been motivated by
Planar-dielectric waveguide Compare with planar-mirror case: “Internal” solution: “External” solution, match at boundaries (homework):
Integrated Micro Optics for Fiber Sensing? The future is bright!
Progress in Planar Optical Waveguides January 2016 Springer Tracts in Modern Physics 266 DOI: 10.1007/978-3-662-48984-0 Authors:
Planar optical waveguides are the input devices to build an integrated optical sensor. This chapter provides review made in the recent advancement of integrated optical sensor that
Planar optical waveguides are the key elements in a modern, high-speed optical network. An important problem facing the optical fiber communication system is optical-axis alignment and
In this paper, the surface roughening of the ion-exchange process on glass using optical profilometry and optical waveguide changes due to ultraviolet (UV) exposure are shown.
Waveguide-enabled approaches have yielded transformative approaches to SERS-functionalized fiber optic probes for remote sensing. Below,
The cylindrical optical fiber and the planar IRE function as waveguides, a general term for structures that transport electromagnetic radiation via repeated TIR. Al-though waveguides can be created in
Abstract This chapter presents an introduction to the optical waveguides including planar and nonplanar structures. Additionally, an analysis of planner waveguides based on ray-optical approach and
One essential el-ement is the guiding of the optical radiation in waveguides for integrated optical devices and optical fibers for long distance transmission. Waveguides can be as short as a few millimeters.
Contact us for competitive quotes on any of our fiber optic products
Get a Quote