High-Power Ultrafast LaSErs using Tapered Double-Clad Fibre

Acronym

PULSE

Description of the granted funding

A world record power 2.5kW laser providing from picosecond down to femtoseconds pulses at repetition rates up to 1GHz with excellent beam quality will be developed and brought to the market at highly competitive costs enabling widespread industrial uptake. By harnessing the unique characteristics of patent protected tapered double-clad fiber amplifiers power-scaled multichannel laser, unparalleled high-power beam qualities, M2<1.1, and pulse energies 2.5-250µJ will be achieved. Using the state-of-the-art highly stable laser diodes as seed lasers allowing parameter flexibility by ultrafast electrical control of pulse duration and repetition rate will a broad range of high-power laser processing application requirements to be met. An extremely stable advanced all-fiber based configuration allow development of a compact ultrashort pulse laser system. A newly-designed delivery fiber utilising cutting-edge technology of high purity glass material fabrication will be used to capable of handling the very high power ultra-short pulses, preserving beam quality over several meters distance. Pioneering technology based on 3D nano-imprint lithography will be exploited to produce coherent beam combining optics and fiber-facet-integrated micro-lenses for advanced beam shaping elements to elongate voxels. Together these will provide laser pulse delivery via patented polygon scanner technology capable of handling high-power pulses at speeds of up to 1.5 km/s. These will enable demonstration in automotive and renewable energy sectors of ultrafast 3D ablation, low-thermal welding of dissimilar metals and faster cost-effective cutting of ultra-hard materials. Exploitation in the form of high-power laser processing systems will immediately follow, benefitting from the unmatched performance data and detailed cost benefit and investment case analysis performed.
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Starting year

2019

End year

2024

Granted funding

811 892.1 €
Coordinator
AMPLICONYX OY
1 118 130.96 €
Participant
MODUS RESEARCH AND INNOVATION LIMITED (UK)
250 708.76 €
Participant
CERAM OPTEC SIA (LV)
253 408.55 €
Participant
LUNOVU GMBH (DE)
563 634.34 €
Participant
ONOSTAMPI SRL (IT)
240 825.58 €
Participant
TEM MESSTECHNIK GMBH (DE)
100 000 €
Participant
PRIME LASER TECHNOLOGY ILIAKA SYSTIMATA THERMANSI ANONIMI VIOMICHANIKI EMPORIKI ETAIREIA (EL)
165 918.34 €
Participant
NANOTYPOS OE (EL)
117 117.56 €
Participant
HOCHSCHULE MITTWEIDA (FH) (DE)
486 287.11 €
Participant
ASTON UNIVERSITY (UK)
594 185.26 €
Participant
CENTRO RICERCHE FIAT SCPA (IT)
254 001.45 €
Participant
IDRYMA TECHNOLOGIAS KAI EREVNAS (EL)
250 097.49 €
Participant

Amount granted

5 206 208 €

Funder

European Union

Funding instrument

Research and Innovation action

Framework programme

Horizon 2020 Framework Programme

Call

Programme part
INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies - Information and Communication Technologies (ICT) (5239)
Topic
Photonics based manufacturing, access to photonics, datacom photonics and connected lighting (ICT-04-2018)
Call ID
H2020-ICT-2018-2

Other information

Funding decision number

824996

Identified topics

photonics, optics, laser