نتایج جستجو برای: fiber couplers

تعداد نتایج: 133163  

Journal: :Nano letters 2015
Michael Mrejen Haim Suchowski Taiki Hatakeyama Yuan Wang Xiang Zhang

On-chip optical data processing and photonic quantum integrated circuits require the integration of densely packed directional couplers at the nanoscale. However, the inherent evanescent coupling at this length scale severely limits the compactness of such on-chip photonic circuits. Here, inspired by the adiabatic elimination in a N-level atomic system, we report an experimental realization of ...

2002
P. M. Lushnikov

We propose using a nonlinear phase shift interferometric converter (NPSIC) (a new device) for lumped compensation of the nonlinearity in optical fibers. The NPSIC is a nonlinear analog of the Mach-Zehnder interferometer and provides a way to control the sign of the nonlinear phase shift. We investigate a potential use of NPSIC for compensation of the nonlinearity to make a dispersion-managed sy...

Journal: :Journal of the Optical Society of America. A, Optics, image science, and vision 2001
P G Dinesen J S Hesthaven

A boundary variation method for the fast and accurate modeling of three-dimensional waveguide grating couplers is presented. The algorithm is verified by detailed comparisons with the results of a rigorous spectral collocation method, showing excellent agreement. Examples of the modeling of large waveguide grating couplers are given to illustrate the applicability and versatility of the method.

2008
J. V. Galan P. Sanchis J. Blasco J. Marti

Introduction Silicon-on-Insulator is emerging as a very suitable technology to develop silicon-based photonic integrated circuits. This technology is 100% CMOS compatible, allowing the development of planar optical devices and making possible to achieve very large scale integration (VLSI). However, nonlinear effects in silicon are inefficient. Materials which have superior optical properties, s...

1998
David K. Hunter David Cornwell Tim H. Gilfedder André Franzen Ivan Andonovic

Recently, optical packet switch architectures, composed of devices such as optical switches, fiber delay lines, and passive couplers, have been proposed to overcome the electromagnetic interference (EMI), pinout and interconnection problems that would be encountered in future large electronic switch cores. However, attaining the buffer size (buffer depth) in optical packet switches required in ...

Journal: :Optics express 2011
Siddharth Tallur Suresh Sridaran Sunil A Bhave

Cavity opto-mechanics enabled radiation pressure (RP) driven oscillators shown in the past offer an all optical Radio Frequency (RF) source without the need for external electrical feedback. However these oscillators require external tapered fiber or prism coupling and non-standard fabrication processes. In this work, we present a CMOS compatible fabrication process to design high optical quali...

Journal: :Optics express 2014
Hualong Bao Kristian Nielsen Henrik K Rasmussen Peter Uhd Jepsen Ole Bang

We present a thorough practical design optimization of broadband low loss, terahertz (THz) photonic crystal fiber directional couplers in which the two cores are mechanically down-doped with a triangular array of air holes. A figure of merit taking both the 3-dB bandwidth and loss of the coupler into account, is used for optimization of the structure parameters, given by the diameter and pitch ...

Journal: :Lab on a chip 2014
Moez Haque Kenneth K C Lee Stephen Ho Luís A Fernandes Peter R Herman

The lab-on-chip (LOC) platform has presented a powerful opportunity to improve functionalization, parallelization, and miniaturization on planar or multilevel geometries that has not been possible with fiber optic technology. A migration of such LOC devices into the optical fiber platform would therefore open the revolutionary prospect of creating novel lab-in-fiber (LIF) systems on the basis o...

2006

The ability to efficiently couple light into and out of semiconductor microcavities is an important aspect of many microphotonic technologies [153], and plays a vital role in chip-based implementations of cavity quantum electrodynamics (cQED) for quantum networking and cryptography [60, 9, 154]. While some geometries, such as micropillar cavities, exhibit highly directional emission that can be...

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