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Poznań University of Technology Deploys First On‑Premises Quantum Computer as Europe Expands Quantum Education Initiatives

Poland’s Poznań University of Technology installed the IQM Radiance R1 quantum computer, while the European Quantum Academy began coordinating quantum education across Europe.
Poland’s Poznań University of Technology (PUT) installed the IQM Radiance R1 quantum computer on 25 May 2026. The European Quantum Academy (EQA) launched on 6 May 2026 to coordinate quantum education across more than 70 institutions, while Bechtle delivered a quantum‑computing platform to a German university campus on 21 January 2026.
Poznań University of Technology unveiled its first locally installed quantum computer, the IQM Radiance R1, on 25 May 2026 in Poznań, Poland [1]. The deployment marks the university’s entry into on‑premises quantum hardware for research and teaching. Earlier in the month, the European Quantum Academy was announced on 6 May 2026 as a continent‑wide network of over 70 partner institutions and more than 100 affiliated organisations aimed at standardising quantum curricula from secondary schools to professional upskilling [3][4]. In January 2026, German IT services firm Bechtle completed a University TechCampus deployment that includes a quantum‑computing platform at a university site in Heilbronn, Germany [2].
The quantum computer at PUT was supplied and installed by IQM Quantum Computers, a Finnish quantum‑hardware company [1]. The European Quantum Academy was created through a coordinated effort among European research universities, industry partners, and governmental bodies to build a unified quantum ecosystem [3][4]. Bechtle’s University TechCampus project delivered the quantum platform as part of a broader digital‑infrastructure rollout for the participating German university [2].
Quantum Computing Deployment at Poznań University of Technology
PUT’s installation of the IQM Radiance R1 provides on‑site access to a 10‑qubit superconducting quantum processor, enabling faculty and students to run quantum algorithms without relying on cloud services [1]. The system is integrated with the university’s existing high‑performance computing (HPC) environment, allowing hybrid quantum‑classical workloads. IQM’s deployment team conducted a multi‑stage installation, including cryogenic infrastructure setup, hardware calibration, and staff training on quantum software stacks [1].
The university’s Department of Computer Science and the Institute of Microelectronics and Microsystems will lead research projects that leverage the quantum processor for materials simulation, optimisation problems, and quantum‑machine‑learning experiments [1]. Academic curricula have been updated to include hands‑on laboratory modules that use the IQM platform, aligning with European efforts to embed quantum concepts across STEM programmes [3].
Launch of the European Quantum Academy

The European Quantum Academy was formally launched on 6 May 2026, bringing together more than 70 partner institutions from across the continent and over 100 affiliated organisations, including research institutes, industry partners, and policy bodies [3][4]. The Academy’s governance structure includes a steering committee, curriculum development working groups, and a student‑exchange network to facilitate mobility among participating universities [3].
The Academy’s governance structure includes a steering committee, curriculum development working groups, and a student‑exchange network to facilitate mobility among participating universities [3].
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Read More →EQA’s initial programme offers a tiered education pathway: introductory modules for secondary‑school students, undergraduate courses integrating quantum theory and programming, and professional‑development certificates for industry practitioners [3][4]. Funding for the Academy is sourced from the European Union’s Horizon Europe programme, national research agencies, and private sector contributions [4].
The Academy’s launch coincides with a broader European strategy to increase the quantum‑qualified workforce, targeting the creation of 10,000 new quantum‑skill jobs by 2030 [4]. Member institutions have committed to sharing teaching resources, joint laboratory access, and collaborative research projects to accelerate talent development [3].
Bechtle’s University TechCampus Quantum Platform Deployment
On 21 January 2026, Bechtle announced the completion of its University TechCampus deployment that includes a quantum‑computing platform for a university campus in Heilbronn, Germany [2]. The deployment integrates a quantum‑hardware service with Bechtle’s campus‑wide digital infrastructure, providing faculty and students with on‑site quantum resources and remote access via secure VPN.
Bechtle’s solution combines hardware provisioning, software stack installation, and ongoing technical support, aligning with the company’s broader initiative to embed emerging technologies in higher‑education environments [2]. The platform supports quantum‑software frameworks such as Qiskit and Cirq, enabling coursework and research projects in quantum algorithms, cryptography, and simulation [2].
The German university’s engineering and physics departments plan to incorporate the quantum platform into curricula for senior‑year projects and interdisciplinary labs, complementing national efforts to embed quantum education at the tertiary level [2].
Bechtle’s solution combines hardware provisioning, software stack installation, and ongoing technical support, aligning with the company’s broader initiative to embed emerging technologies in higher‑education environments [2].
Impact on Students, Educators, and Institutions

The deployment of the IQM Radiance R1 at PUT provides immediate, hands‑on quantum‑computing capability for Polish students and researchers, reducing reliance on external cloud providers and shortening experiment turnaround times [1]. European educators can now reference a concrete on‑premises system when designing laboratory exercises, aligning teaching outcomes with industry standards [3].
The European Quantum Academy creates a coordinated curriculum and credentialing framework that standardises quantum education across participating institutions, facilitating student mobility and recognition of qualifications throughout Europe [3][4]. Institutions joining the Academy gain access to shared teaching materials, joint research opportunities, and a network of industry partners, potentially accelerating curriculum development cycles [3].
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Read More →Bechtle’s University TechCampus deployment demonstrates a scalable model for integrating quantum resources into existing campus IT ecosystems, offering a template for other European universities seeking similar capabilities [2]. The combined effect of these initiatives is an expanded quantum‑education infrastructure that supports the development of a skilled workforce, addresses current talent shortages, and positions European institutions to contribute to global quantum‑technology research [4].
Key Facts
What: European institutions launched on‑premises quantum computers and a continent‑wide quantum education network in 2026.
What: European institutions launched on‑premises quantum computers and a continent‑wide quantum education network in 2026.
When: May 25 2026 (PUT), May 6 2026 (EQA), January 21 2026 (Bechtle).
Impact: Students and educators now have direct access to quantum hardware and coordinated curricula across Europe.
Sources
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Read More →- Poland’s Poznan University of Technology unveils IQM quantum computer … – IQM Technologies
- Bechtle Advances European Quantum Innovation With University TechCampus … – EuropaWire
- The Quantum Academy launches to train Europe’s next generation of talent – Quantum Technology (QT)
- The Quantum Academy Launches to Train Europe’s Next Generation of Talent – Quantum Wire








