PlasmoniAC (871391)

  https://cordis.europa.eu/project/id/871391

  Horizon 2020 (2014-2020)

  Energy- and Size-efficient Ultra-fast Plasmonic Circuits for Neuromorphic Computing Architectures

  Unconventional Nanoelectronics (ICT-06-2019)

  software  ·  malicious software  ·  deep learning  ·  nanoelectronics

  2020-01-01 Start Date (YY-MM-DD)

  2023-09-30 End Date (YY-MM-DD)

  € 4,114,926 Total Cost


  Description

PlasmoniAC invests in neuromorphic computing towards sustaining processing power and energy efficiency scaling, adopting the best-in-class material and technology platforms for optimizing computational power, size and energy at every of its constituent functions. It employs the proven high-bandwidth and low-loss credentials of photonic interconnects together with the nm-size memory function of memristor nanoelectronics, bridging them by introducing plasmonics as the ideal technology for offering photonic-level bandwidths and electronic-level footprint computations within ultra-low energy consumption envelopes. Following a holistic hardware/software co-design approach, PlasmoniAC targets the following objectives: i) to elevate plasmonics into a computationally-credible platform with Nx100Gb/s bandwidth, um2-scale size and >1014 MAC/s/W computational energy efficiency, using CMOS compatible BTO and SiOC materials for electro- and thermo-optic computational functions, ii) to blend them via a powerful 3D co-integration platform with SixNy-based photonic interconnects and with non-volatile memristor-based weight control, iii) to fabricate two different sets of 100Gb/s 16- and 8-fan-in linear plasmonic neurons, iv) to deploy a whole new class of plasmo-electronic and nanophotonic activation modules, v) to demonstrate a full-set of sin2(x), ReLU, sigmoid and tanh plasmonic neurons for feed-forward and recurrent neurons, v) to embrace them into a properly adapted Deep Learning training model suite, ultimately delivering a neuromorphic plasmonic software design library, and vi) to apply them on IT security-oriented applications for threat and malware detection. Succeeding in its targets will release a powerful artificial plasmonic neuron suite with up to 3 orders of magnitude higher computational efficiencies per neuron and 1 and 6 orders of magnitude higher energy and footprint efficiencies, respectively, compared to the top state-of-the-art neuromorphic machines.


  Complicit Organisations

1 Israeli organisation participates in PlasmoniAC.

Country Organisation (ID) VAT Number Role Activity Type Total Cost EC Contribution Net EC Contribution
Switzerland LUMIPHASE AG (895350353) CHE171239733MWST participant PRC € 230,083 € 230,083 € 230,083
France UNIVERSITE DIJON BOURGOGNE (999839820) nan thirdParty HES € 301,717 € 0 € 240,000
Greece ARISTOTELIO PANEPISTIMIO THESSALONIKIS (999895692) EL090049627 coordinator HES € 666,875 € 666,875 € 666,875
Belgium INTERUNIVERSITAIR MICRO-ELECTRONICA CENTRUM (999981149) BE0425260668 participant REC € 375,353 € 375,353 € 375,353
Switzerland IBM RESEARCH GMBH (999909854) CHE110354546MWST participant PRC € 272,666 € 272,666 € 272,666
Germany GESELLSCHAFT FUR ANGEWANDTE MIKRO UND OPTOELEKTRONIK MIT BESCHRANKTERHAFTUNG AMO GMBH (999796558) DE154818567 participant OTH € 317,500 € 317,500 € 317,500
United Kingdom UNIVERSITY OF SOUTHAMPTON (999975329) GB568630414 participant HES € 465,777 € 465,777 € 465,777
Switzerland EIDGENOESSISCHE TECHNISCHE HOCHSCHULE ZUERICH (999979015) CHE115203630MWST participant HES € 397,910 € 397,910 € 397,910
Israel MELLANOX TECHNOLOGIES LTD - MLNX (990560024) IL512763285 participant PRC € 306,550 € 306,550 € 306,550
France COMMUNAUTE D' UNIVERSITES ET ETABLISSEMENTS UNIVERSITE BOURGOGNE - FRANCHE - COMTE (920180801) FR37130020910 participant HES € 535,467 € 420,000 € 180,000
France CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS (999997930) FR40180089013 participant REC € 345,492 € 345,492 € 345,492
Germany VPIPHOTONICS GMBH (950983248) DE286303781 participant PRC € 201,250 € 201,250 € 201,250