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  1. Photonics Journal
  2. Year : 2009 Volume : 1
  3. Issue 3
  4. Crosstalk Reduction in Square Cavities
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Year : 2016 Volume : 8
Year : 2015 Volume : 7
Year : 2014 Volume : 6
Year : 2013 Volume : 5
Year : 2012 Volume : 4
Year : 2011 Volume : 3
Year : 2010 Volume : 2
Year : 2009 Volume : 1
Issue 6
Issue 5
Issue 4
Issue 3
High-Performance Red Lasers With Low Beam Divergence
Flatband Slow Wave in Novel Air-Hole-Array Strip Waveguides
Nanoholes Grating Couplers for Coupling Between Silicon-on-Insulator Waveguides and Optical Fibers
Crosstalk Reduction in Square Cavities
Label-Free Biosensing With a Slot-Waveguide-Based Ring Resonator in Silicon on Insulator
Soliton Generation and Rogue-Wave-Like Behavior Through Fourth-Order Scalar Modulation Instability
Fast Light and the Speed of Information Transfer in the Presence of Detector Noise
Issue 2
Issue 1

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Crosstalk Reduction in Square Cavities

Content Provider IEEE Xplore Digital Library
Author Wahsheh, R.A. Zhaolin Lu Abushagur, M.A.G.
Copyright Year 2009
Abstract Theoretically and experimentally, we demonstrate that low crosstalk between two crossed line-defect waveguides formed in a square lattice photonic crystal (PC) structure can be achieved using a resonant cavity at the intersection area. The PC resonator consists of cubic air-holes in silicon air-holes. The Q-factor of the cavity can be changed by increasing the number of holes that form the cavity. The theoretical and experimental crosstalk results are about -40 dB and -20 dB, respectively.
Starting Page 191
Ending Page 196
Page Count 6
File Size 1716929
File Format PDF
ISSN 19430655
Volume Number 1
Issue Number 3
Language English
Publisher Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Publisher Date 2009-09-01
Publisher Place U.S.A.
Access Restriction Subscribed
Rights Holder Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Subject Keyword Crosstalk Optical waveguides Q factor Lattices Optical resonators Silicon Telecommunications Photonic crystals Optical waveguide theory Optical scattering photonic crystals Waveguides
Content Type Text
Resource Type Article
Subject Atomic and Molecular Physics, and Optics Electrical and Electronic Engineering
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