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Horizon Europe · Digital, Industry and Space

Trapped-Ion Platform Technologies

HORIZON-JU-EUROHPC-2026-TIPT-09-01 Trapped-Ion Platform Technologies HORIZON-JU-RIA Academics

DeadlineNovember 17, 2026 44 days left
OpensAugust 13, 2026EU data
StatusOpenupdated October 3, 2026

Call summary

From the official text, opening part

Expected Outcome: This action will advance Europe’s leadership in trapped-ion quantum computing by achieving the following key outcomes: Establishment of a full-stack ion-trap quantum computer aiming at more than 1.000 qubits, fully integrated into high-performance computing (HPC) systems, and accessible via the cloud. Demonstration of quantum advantage for selected real-world applications, validated against benchmarks. Strengthened European capabilities to develop modular, interoperable, and scalable quantum computing architectures. Implementation and demonstration of advanced error correction and fault-tolerant quantum computing techniques. Integration of full-stack hardware-software systems with standardised and certified interfaces. Engagement with industry and academia through open access to quantum computing resources and co-design of applications. Scope: The action should support … more

Academics who may be relevant

By subject fit

6
  1. %62
    RASİM DERMEZ
    ProfesörAfyon Kocatepe Üniversitesi

    Shared topics: Quantum Information and Cryptography · Quantum Mechanics and Applications · Quantum Computing Algorithms and Architecture · Quantum optics and atomic interactions

    Overlapping papers: Investigation of Quantum Entanglement through a Trapped Three Level Ion Accompanied with Beyond Lamb-Dicke Regime (2020) · Two measures elaborated for entangled states: Quantum entropy and fidelity using Schmidt coefficients of the reduced density matrix of full TRI (2022)

  2. %44
    ÖZGÜR ESAT MÜSTECAPLIOĞLU
    ProfesörKoç Üniversitesi

    Shared topics: Quantum Information and Cryptography · Quantum Computing Algorithms and Architecture

    Overlapping papers: Long lived entangled qudits in a trapped three level ion beyond theLamb Dicke limit (2009) · Motional macroscopic quantum superposition states of a trappedthree level ion (2003)

  3. %43
    AHMET LEVENT SUBAŞI
    Profesörİstanbul Teknik Üniversitesi

    Shared topics: Quantum, superfluid, helium dynamics · Quantum and electron transport phenomena

    Overlapping papers: Rotating a Rashba coupled Fermi gas in two dimensions (2016) · Rotating a Rashba-coupled Fermi gas in two dimensions (2016)

  4. %41
    AMMAR DAŞKIN
    Doçentİstanbul Medeniyet Üniversitesi

    Shared topics: Quantum Computing Algorithms and Architecture · Quantum Information and Cryptography · Quantum-Dot Cellular Automata · Quantum and electron transport phenomena

    Overlapping papers: Quantum distortion model for running variational quantum algorithms without error corrections (2026) · Quantum computing methods for electronic states of the water molecule (2019)

  5. %40
    AHMET CELAL CEM SAY
    ProfesörBoğaziçi Üniversitesi

    Shared topics: Quantum Computing Algorithms and Architecture

    Overlapping papers: Unbounded error quantum computation with small space bounds (2011) · Time hierarchies for sublogarithmic-space quantum computation (2026)

  6. %40
    UMUT TANYERİ
    Araştırma GörevlisiOrta Doğu Teknik Üniversitesi

    Shared topics: Quantum, superfluid, helium dynamics

    Overlapping papers: Vortex lattices in strongly confined quantum droplets (2023) · Vortex and fractional quantum Hall phases in a rotating anisotropic Bose gas (2025)

The fit is computed by code on every request. The call text (title, keywords, start of the official description) is compared with three sources: semantic similarity to the academic profile (50%), shared distinctive terms in YÖKSİS keywords and OpenAlex topics (25%) and publication content — titles, English abstracts and their Turkish translations (25%). Thanks to the translations, Turkish calls also meet papers written in English. Common words weigh little; below 40% is not shown. A subject hint only — not an eligibility, capacity or merit assessment. Hidden profiles are never listed.