COPERNICUS

Compact Otdm/wdm optical receivers based on photonic crystal Integrated circuits

 Coordinatore THALES SA 

 Organization address address: Rue de Villiers 45
city: NEUILLY SUR SEINE

contact info
Cognome: PREVOTAT, OLIVIER
Email: send email
Telefono: -69415675
Fax: -69415937

 Nazionalità Coordinatore France [FR]
 Totale costo 4˙179˙959 €
 EC contributo 2˙865˙000 €
 Programma FP7-ICT
Specific Programme "Cooperation": Information and communication technologies
 Funding Scheme CP
 Anno di inizio 2010
 Periodo (anno-mese-giorno) 2010-01-01   -   2012-12-31

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    THALES SA

 Organization address address: Rue de Villiers 45
city: NEUILLY SUR SEINE

contact info
Cognome: PREVOTAT, OLIVIER
Email: send email
Telefono: -69415675
Fax: -69415937

FR (NEUILLY SUR SEINE) coordinator 0.00
2 CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE FR participant 0.00
3 DANMARKS TEKNISKE UNIVERSITET DK participant 0.00
4    MERGEOPTICS GMBH

 Organization address address: AM BORSIGTURM 17
city: BERLIN
postcode: 13507

contact info
Cognome: N/A

DE (BERLIN) participant 0.00
5    THALES SYSTEMES AEROPORTES S.A.

 Organization address address: AV GAY LUSSAC LA CLEF DE SAINT PIERRE 2
city: ELANCOURT
postcode: 78990

contact info
Cognome: N/A

FR (ELANCOURT) participant 0.00
6 THE UNIVERSITY OF NOTTINGHAM participant 0.00
7    UNIVERSITA DEGLI STUDI DI FERRARA

 Organization address address: SAVONAROLA 9
city: FERRARA

contact info
Cognome: N/A

IT (FERRARA) participant 0.00
8    UNIVERSITE DE RENNES I

 Organization address address: RUE DU THABOR 2
city: RENNES CEDEX
postcode: CS 46510

contact info
Cognome: N/A

FR (RENNES CEDEX) participant 0.00

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 Word cloud

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integration    filters    crystal    data    wavelength    multiplexed    links    optical    switching    bandwidth    ultra    nonlinear    chip    gates    modeling    energy    copernicus    photonic    division    speed    otdm   

 Obiettivo del progetto (Objective)

COPERNICUS aims to develop compact demultiplexing receivers for 100Gb/s optical time division multiplexed (OTDM) and wavelength division multiplexed (WDM) signals, based on photonic crystal technology. There is a pressing need for these devices for ultra-high bandwidth data links in server farms, optical storage networks and on-board internet/entertainment systems, where demand is driving the data bandwidth and technology integration level rapidly upwards. Next generation telecom systems will also benefit from these devices for OTDM and optical packet switching. Their high-speed and bandwidth, together with their ultra-low power consumption and extreme compactness, also make them a very promising technology for seamless cross-chip and off-chip data links for CMOS electronics. This approach has all the hallmarks of a highly disruptive technology with the potential to place Europe at the forefront of photonics.

COPERNICUS targets advances in the physics, technology, modeling, and integration of photonic crystal devices. Key devices include high-speed all-optical gates, low-crosstalk wavelength drop filters, and high-speed integrated photodetectors. These devices rely on very strong light-matter interactions arising from the large, ultra-fast nonlinear optical response of III-V semiconductors and the strong resonant field enhancement in photonic crystals. This is ideal for filters and all-optical gates, enabling a dramatic reduction in size and switching energy. Their switching energy*delay product is two orders of magnitude smaller than that of competing technologies.

Modeling will consider carrier plasma (spectral and spatial) contributions to the nonlinear optical response and develop a robust optical, thermal and electronic design tool for photonic crystal devices. New levels of photonic crystal integration will be pursued to combine these devices and achieve complex all-optical functions attractive to both medium- and long-term markets.

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