Two-Photon Absorption in a Semiconductor Micro-cavity (Paperback)

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Due to continued growth of the Internet and theintroduction of new broadband services there is aconstant requirement for higher speed communications.It is expected the optical communications systemswill evolve towards higher capacities by increasingindividual line rates. To implement these high-speedoptical networks e.g. operating at individual channelrates above 100 Gb/s, all-optical processingtechniques are investigated. In this work a novelapproach based on two photon absorption nonlinearitywithin a resonance cavity enhanced structure isexplored. The novelty of this work lies in theability of using a single photodetector forsequential monitoring of different wavelengthchannels, operating at line rates exceedingconventional electrical processing-speeds limits.Experimental work included characterization andtesting of the fabricated TPA micro-cavities for 160Gb/s RZ signal chromatic dispersion monitoring. Themain attribute of this work is the experimentalinvestigation of the performance of TPA basedmicro-cavity laboratory prototype, in amulti-wavelength high-speed optical system.

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Product Description

Due to continued growth of the Internet and theintroduction of new broadband services there is aconstant requirement for higher speed communications.It is expected the optical communications systemswill evolve towards higher capacities by increasingindividual line rates. To implement these high-speedoptical networks e.g. operating at individual channelrates above 100 Gb/s, all-optical processingtechniques are investigated. In this work a novelapproach based on two photon absorption nonlinearitywithin a resonance cavity enhanced structure isexplored. The novelty of this work lies in theability of using a single photodetector forsequential monitoring of different wavelengthchannels, operating at line rates exceedingconventional electrical processing-speeds limits.Experimental work included characterization andtesting of the fabricated TPA micro-cavities for 160Gb/s RZ signal chromatic dispersion monitoring. Themain attribute of this work is the experimentalinvestigation of the performance of TPA basedmicro-cavity laboratory prototype, in amulti-wavelength high-speed optical system.

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Product Details

General

Imprint

Lap Lambert Academic Publishing

Country of origin

Germany

Release date

June 2011

Availability

Expected to ship within 10 - 15 working days

First published

June 2011

Authors

,

Dimensions

229 x 152 x 7mm (L x W x T)

Format

Paperback - Trade

Pages

124

ISBN-13

978-3-8443-8161-0

Barcode

9783844381610

Categories

LSN

3-8443-8161-9



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