Entangled Flying Electron Quantum Technology
ELEQUANT aims to revolutionize quantum technology by developing high-fidelity flying charge qubits using electronic wavepackets in novel semiconductor materials for enhanced scalability and connectivity.
Projectdetails
Introduction
The ELEQUANT project proposes a paradigm shift in quantum technology by exploiting flying qubits, presenting a transformative alternative to mainstream approaches such as superconducting or semiconducting qubits.
Challenges of Photon-based Qubits
While photon-based flying qubits face challenges in real-time manipulation and interaction due to their fast propagation speed and weak photon-photon interaction, ELEQUANT aims to harness the potential of electronic charges for superior scalability and connectivity.
Research Focus
Through pioneering research in the manipulation of electronic wavepackets in semiconductor nanostructures, the project strives to achieve the ambitious goal of realizing high-fidelity flying charge qubits and demonstrating entanglement between them.
Key Objectives
Key objectives include:
- The development of novel quantum materials platforms based on strained Ge and multi-layered graphene.
- Establishing a comprehensive roadmap for solid-state flying qubit technology.
Innovation and Collaboration
ELEQUANT seeks to accelerate innovation in quantum technology and foster collaborative partnerships with industry stakeholders on a European scale.
Vision for the Future
With a focus on scalability, connectivity, and coherence, ELEQUANT aims to propel quantum technology into a new era of unprecedented capabilities and applications.
Financiële details & Tijdlijn
Financiële details
Subsidiebedrag | € 3.495.061 |
Totale projectbegroting | € 3.495.061 |
Tijdlijn
Startdatum | 1-3-2025 |
Einddatum | 28-2-2029 |
Subsidiejaar | 2025 |
Partners & Locaties
Projectpartners
- CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRSpenvoerder
- COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES
- UNIVERSITY OF GLASGOW
- UNIVERSITY OF WARWICK
- TECHNISCHE UNIVERSITEIT DELFT
- NEXTNANO GMBH
- GESELLSCHAFT FUR GERATEBAU MIT BESCHRANKTER HAFTUNG
- UNIVERSITE GRENOBLE ALPES
- NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Land(en)
Vergelijkbare projecten binnen EIC Pathfinder
Project | Regeling | Bedrag | Jaar | Actie |
---|---|---|---|---|
"Creation of innovative ""humidity to electricity"" renewable energy conversion technology towards sustainable energy challenge"The CATCHER project aims to develop scalable technology for converting atmospheric humidity into renewable electricity, enhancing EU leadership in clean energy innovation. | EIC Pathfinder | € 2.996.550 | 2022 | Details |
Quantitative Ultrasound Stochastic Tomography - Revolutionizing breast cancer diagnosis and screening with supercomputing-based radiation-free imaging.The project aims to revolutionize breast cancer imaging by developing adjoint-based algorithms for uncertainty quantification, enhancing diagnostic confidence through high-resolution, radiation-free images. | EIC Pathfinder | € 2.744.300 | 2022 | Details |
Dynamic Spatio-Temporal Modulation of Light by Phononic ArchitecturesDynamo aims to revolutionize imaging technologies by enabling simultaneous light modulation at GHz rates, enhancing processing speed and positioning Europe as a leader in optical advancements. | EIC Pathfinder | € 2.552.277 | 2022 | Details |
Emerging technologies for crystal-based gamma-ray light sourcesTECHNO-CLS aims to develop novel gamma-ray light sources using oriented crystals and high-energy particle beams, enhancing applications in various scientific fields through innovative technology. | EIC Pathfinder | € 2.643.187 | 2022 | Details |
"Creation of innovative ""humidity to electricity"" renewable energy conversion technology towards sustainable energy challenge"
The CATCHER project aims to develop scalable technology for converting atmospheric humidity into renewable electricity, enhancing EU leadership in clean energy innovation.
Quantitative Ultrasound Stochastic Tomography - Revolutionizing breast cancer diagnosis and screening with supercomputing-based radiation-free imaging.
The project aims to revolutionize breast cancer imaging by developing adjoint-based algorithms for uncertainty quantification, enhancing diagnostic confidence through high-resolution, radiation-free images.
Dynamic Spatio-Temporal Modulation of Light by Phononic Architectures
Dynamo aims to revolutionize imaging technologies by enabling simultaneous light modulation at GHz rates, enhancing processing speed and positioning Europe as a leader in optical advancements.
Emerging technologies for crystal-based gamma-ray light sources
TECHNO-CLS aims to develop novel gamma-ray light sources using oriented crystals and high-energy particle beams, enhancing applications in various scientific fields through innovative technology.
Vergelijkbare projecten uit andere regelingen
Project | Regeling | Bedrag | Jaar | Actie |
---|---|---|---|---|
quantum electro-optic amplifiers for the next generation quantum and supercomputersQ-Amp aims to develop innovative electro-optical amplifiers that enhance RF-qubit efficiency, overcoming bottlenecks in quantum computing and enabling high-speed communication with classical supercomputers. | ERC STG | € 1.930.736 | 2022 | Details |
Lithium Niobate Quantum systemsThis project aims to develop integrated Lithium Niobate Quantum systems (LiNQs) to create a comprehensive platform for scalable quantum photonic circuits, enhancing Europe's quantum technology capabilities. | ERC STG | € 2.499.381 | 2022 | Details |
New superconducting quantum-electric device concept utilizing increased anharmonicity, simple structure, and insensitivity to charge and flux noiseConceptQ aims to develop a novel superconducting qubit with high fidelity and power efficiency, enhancing quantum computing and enabling breakthroughs in various scientific applications. | ERC ADG | € 2.498.759 | 2022 | Details |
Entanglement of an array of massive, magnetically levitated superconducting microparticles on a chipSuperQLev aims to demonstrate entanglement in magnetically levitated superconducting microparticles, merging technologies for advanced quantum sensing and tests of quantum mechanics. | ERC COG | € 2.000.000 | 2024 | Details |
quantum electro-optic amplifiers for the next generation quantum and supercomputers
Q-Amp aims to develop innovative electro-optical amplifiers that enhance RF-qubit efficiency, overcoming bottlenecks in quantum computing and enabling high-speed communication with classical supercomputers.
Lithium Niobate Quantum systems
This project aims to develop integrated Lithium Niobate Quantum systems (LiNQs) to create a comprehensive platform for scalable quantum photonic circuits, enhancing Europe's quantum technology capabilities.
New superconducting quantum-electric device concept utilizing increased anharmonicity, simple structure, and insensitivity to charge and flux noise
ConceptQ aims to develop a novel superconducting qubit with high fidelity and power efficiency, enhancing quantum computing and enabling breakthroughs in various scientific applications.
Entanglement of an array of massive, magnetically levitated superconducting microparticles on a chip
SuperQLev aims to demonstrate entanglement in magnetically levitated superconducting microparticles, merging technologies for advanced quantum sensing and tests of quantum mechanics.