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Advancing quantum technology workforce: industry insights into qualification and training needs

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arxiv 2407.21598 v1 pith:TS4RAYOJ submitted 2024-07-31 physics.ed-ph

classification physics.ed-ph
keywords quantumindustrytechnologiestrainingdifferentneedsworkforcebuilding
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The transition of second-generation quantum technologies from a research topic to a topic of industrial relevance has led to a growing number of quantum companies and companies that are exploring quantum technologies. Examples would include a start-up building a quantum key distribution device, a large company working on integrating a quantum sensing core into a product, or a company providing quantum computing consultancy. They all face different challenges and needs in terms of building their quantum workforce and training in quantum concepts, technologies and how to derive value from them. With the study documented in this paper, we aim to identify these needs and provide a picture of the industry's requirements in terms of workforce development and (external) training and materials. We discuss, for example, the shortage of engineers and jobs relevant to the quantum industry, the challenge of getting people interested in quantum, and the need for training at different levels and in different formats - from awareness raising and self-learning materials to university courses in quantum systems engineering. The findings are based on 34 semi-structured interviews with industry representatives and a follow-up questionnaire to validate some of the issues raised in the interviews. These results have influenced activities in EU projects, including an update of the European Competence Framework for Quantum Technologies.

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  1. Affordances and Challenges of Incorporating a Remote, Cloud-accessible Quantum Experiment into Undergraduate Courses

    physics.ed-ph 2025-02 accept novelty 6.0 of 10

    Instructors and students see promise in a remote cloud-based BEC experiment for teaching quantum experimental skills, alongside concerns about access, training, and loss of hands-on experience.

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