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MEFISTA SIGNED

Multi-scale fibre-based optical frequency combs: science, technology and applications

Total Cost €

0

EC-Contrib. €

0

Partnership

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 MEFISTA project word cloud

Explore the words cloud of the MEFISTA project. It provides you a very rough idea of what is the project "MEFISTA" about.

waveguides    speed    car    locked    dtu    sectoral    interaction    multidisciplinary    network    manufacturing    leaders    techniques    laser    objects    expanding    synergistic    ranging    dual    fingerprinting    industrial    placements    ofc    tests    nkt    fibres    epfl    sources    optics    beneficiaries    academic    frequency    generation    market    tuneable    combination    photonic    tracing    esrs    acquire    class    lasers    infrared    characterisation    expertise    mefista    optical    nonlinear    demand    gender    tp    qualified    lidar    ir    mode    hands    technologies    inter    doppler    industry    huge    trial    collaborations    envisaged    ofcs    fibre    stage    countries    upc    molecular    combs    training    object    science    aston    mlfls    autonomous    proposing    theory    driving    ulille    context    world    force    mid    transferable    recognition    rdm    moving    dimension    integrity    special    global    etn    distance    femtosecond    speciality    comb    locking    physics    cluster    skills    academy    experts   

Project "MEFISTA" data sheet

The following table provides information about the project.

Coordinator
ASTON UNIVERSITY 

Organization address
address: ASTON TRIANGLE
city: BIRMINGHAM
postcode: B4 7ET
website: www.aston.ac.uk

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country United Kingdom [UK]
 Total cost 1˙710˙850 €
 EC max contribution 1˙710˙850 € (100%)
 Programme 1. H2020-EU.1.3.1. (Fostering new skills by means of excellent initial training of researchers)
 Code Call H2020-MSCA-ITN-2019
 Funding Scheme MSCA-ITN-ETN
 Starting year 2020
 Duration (year-month-day) from 2020-02-01   to  2024-01-31

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    ASTON UNIVERSITY UK (BIRMINGHAM) coordinator 303˙172.00
2    RICHMOND DESIGN & MARKETING LIMITED UK (COVENTRY) participant 303˙172.00
3    NKT PHOTONICS A/S DK (BIRKEROD) participant 297˙522.00
4    ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE CH (LAUSANNE) participant 281˙276.00
5    UNIVERSITE DE LILLE FR (LILLE) participant 274˙802.00
6    UNIVERSITAT POLITECNICA DE CATALUNYA ES (BARCELONA) participant 250˙904.00

Map

 Project objective

The key photonic technology that enables a cluster of applications and so is a driving force for an expanding photonic market in the context of addressing the global challenges is an optical frequency comb (OFC) technology based on mode locked femtosecond lasers (MLFLs). To respond to the huge demand for qualified experts on OFC technologies, we envisaged and are proposing European Training Network (ETN) “Multi-scale fibre-based optical frequency combs: science, technology and applications” (MEFISTA). MEFISTA will provide a world class advanced training programme (TP) to 6 early stage researchers (ESRs) to the level of the next generation of leaders in the fields MLFLs-based OFCs technologies, by exploiting challenging interaction between academy (Aston, UPC, ULille, EPFL and DTU) and industry (NKT and RDM). MEFISTA aims research and training collaborations that will help ESRs to acquire unique knowledge and research skills on OFC technology from the theory to implementation: development of novel mode- locking techniques and speciality fibres and waveguides for MLFLs, mid-infrared (mid-IR) tuneable dual combs sources for molecular fingerprinting, design and characterisation of dual comb MLFLs, and MLFLs manufacturing. A special focus will be the industrial applications related to development and trial tests of MLFLs in the context of autonomous driving (car-object distance ranging, object recognition, moving objects speed tracing: Doppler LIDAR). The TP will be implemented through the unique combination of the “hands-on” research training, non-academic placements and advanced inter/multidisciplinary/inter-sectoral training on nonlinear science, laser physics, fibre optics, and autonomous driving technologies and transferable skills including Research Integrity, Gender Dimension in Research, and Open Science. The TP will be also supported by synergistic merging the expertise of 4 academic, two non-academic beneficiaries and 1 academic partners from 5 countries.

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