Quantum Experimental Pilot Lines for Quantum Technologies
HORIZON JU Research and Innovation Actions
- Deadline for applications
- 17 November 2026
- Opening date
- 13 August 2026
- Added
- 13 August 2026
What the call is looking for
The call text itself, as published on the portal.
Expected Outcome: This action will strengthen Europe's leadership and strategic autonomy in quantum technologies by advancing experimental pilot line capacities as a vital stepping stone toward future industrial-scale quantum hardware production. Qu-Pilot serves as the critical intermediary between academic research and the stable pilot lines under the Chips Joint Undertaking, offering a testbed for technological innovation, reproducibility, and manufacturability. Expected outcomes include: - Deployment of experimental quantum pilot lines addressing diverse platforms and materials, laying the groundwork for broader integration into Chips JU pilot lines. - Establishment of scalable and reproducible quantum fabrication processes, advancing TRL 4–6 technologies and addressing early-stage certification, standardisation, and quality control. - Reinforcement of a pan-European quantum hardware ecosystem through shared infrastructure and open-access models, fostering participation from SMEs, startups, and research institutes. - Demonstrated ability to accelerate technology maturity and feed critical feedback loops into future Chips JU stability pilot lines. - Enhanced synergies with testing infrastructures (e.g., Qu-Test), standardisation efforts, and industrialisation roadmaps, enabling horizontal integration across computing, communication, sensing, and enabling tech domains. Scope: The action is to implement the pilot production elements of the Qu-Pilot Framework Partnership Agreement. The proposal should advance the maturity of quantum hardware technologies in alignment with EU industrial strategy, emphasising flexibility, innovation, and scalability. The proposal should address: - Establishment or enhancement of experimental pilot production infrastructure for TRL 4–6 quantum hardware technologies, with strong R&D orientation. - Development of pre-industrial processes for: - Quantum processors (e.g., superconducting, trapped ions, photonic), - Quantum sensors (e.g., NV centers), - Cryo-compatible packaging and interconnects. - Integration of cleanroom capabilities with lithography, etching, and deposition tailored to quantum device requirements (e.g., silicon, diamond, III-Vs), ensuring convergence with Chips JU standards. - Creation of collaborative fabrication access models (shared-cost basis) open to academic and industrial partners. - Development of standardised workflows for yield analysis, reproducibility, and quality assurance, supporting component certification pathways. - Continuous engagement with Qu-Test and other testbeds to enable rapid iteration cycles and technology validation. - Active alignment with Chips JU’s pilot line roadmap to enable seamless transfer of validated technologies once the stability pilot lines are operational. - Contribution to a transversal European infrastructure serving multiple quantum domains (computing, sensing, communications), ensuring cross-domain integration and maximising synergies. Technology Readiness Level - Technology readiness level expected from completed projects The rules are described in General Annex B of the Horizon Europe Work Programme 2026-2027. Activities are expected to validate technologies starting at TRL 3/4 and confirm their progression to TRL 5/7 by the end of the project.
CESPI can handle this application.
We check your eligibility, prepare the file and stay with it through to the final report, with a 92% approval rate in national and EU funding.