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Postdoc - scalable, shuttle-based spin-qubit quantum-chips

Contratto di ricercaScadenza 30 settembre 2026
Ente
Forschungszentrum Jülich
Paese
Germania
Campo di ricerca
All
Lingua dell’annuncio
Inglese
Tipo di contratto
To be defined
Profilo ricercato
Ricercatore post-dottorato
Sede
Aachen, Germania
Pubblicato il
28 luglio 2026
Scadenza
30 settembre 2026

Descrizione

Sintesi in italiano (traduzione automatica)

Il JARA-Institute for Quantum Information (PGI-11) cerca un ricercatore post-dottorato per condurre ricerche teoriche ed esperimentali sui qubit a semiconduttore. La sede è situata presso il Forschungszentrum Jülich GmbH e l'Università RWTH di Aachen. Il candidato si concentrerà sulla dimostrazione sperimentale dello shuttling coerente degli spin e sul controllo ad alta fedeltà dei qubit. Sono richiesti un Master e un Dottorato in fisica o in un campo correlato, esperienza in esperimenti di controllo quantistico e competenze nello sviluppo software. È apprezzata la conoscenza della lingua tedesca, ma non è obbligatoria. L'ente offre un ambiente di lavoro internazionale, flessibilità oraria e opportunità di sviluppo professionale.

Testo originale dell'annuncio (in inglese)

Area of research: Scientific / postdoctoral posts Job description: Postdoc - scalable, shuttle-based spin-qubit quantum-chips The JARA-Institute for Quantum Information (PGI-11) conducts theoretical research on many aspects of quantum computing and experimental research on semiconductor qubits. The institute has two parts, located at the sites Forschungszentrum Jülich GmbH and RWTH Aachen University, under the umbrella of the Jülich-Aachen Research Alliance (JARA). In the domain of semiconductor qubits, the development and validation of our advanced architecture based on coherent long range qubit shuttling Nat. Commun. 15, 4977 (2024) is currently one of our main activities. To this end, we pursue a holistic approach addressing material challenges, device simulation, fabrication, systematic characterization, high fidelity operation as well as integration and scaling technologies. Our ultimate vision is a fully integrated semiconductor processor with integrated low-power control circuits to enable a scale up to millions of qubits. www.youtube.com/watch Your Job Building on in-house fabricated devices, we have recently demonstrated the ability to shuttle electrons between gate defined quantum dots in Si/SiGe over 20 micron-scale distances using only four different AC-voltages, independent of the distance covered [ Nat. Commun. 15, 2296 (2024) ]. Theoretical consideration and experimental demostrations indicate good prospects for maintaining spin-coherence of the shuttled electron [ Nat. Commun. 15, 1325 (2024) ] which makes this approach very promising for scaling up semiconductor spin qubit devices [Nature 653, 360 (2026) ]. This position focuses on experimentally demonstrating coherent spin shuttling, shuttling-compatible high-fidelity qubit control and further ingredients for a shuttling-based architecture, using devices from academic or industrial fabrication. Key activities can include: Experimental characterization of spin coherence during shuttling Shuttling-compatible demonstration of high-fidelity qubit control Demonstration of shuttle-based Si/SiGe quantum chips Advancement of large-scale shuttling based architecture with 2D-connectivity Migration to industrially fabricated devices Your Profile Master and PhD in physics or a related field In-depth experience with quantum control experiments on quantum dot qubits Good software development skills Experience with sub-Kelvin cryogenic techniques Strong aptitude for mentoring students Good communication skills A strong drive to conduct ambitious, cutting edge research towards scalable quantum computing A research track record commensurate with our ambition Very good command of written and spoken English with extensive vocabulary is required (at least B2 level according to the CEFR ), ideally supported by a certificate confirming the language level. Knowledge of the German language is not mandatory but certainly appreciated Our Benefits for You We work on highly topical, socially relevant issues and offer you the opportunity to actively shape change! You can expect a wide range of opportunities: Meaningful tasks: The position offers a varied and diverse role in an international environment Work-life balance: Optimal conditions for balancing work and private life, as well as a family-friendly company policy. The option of flexible working (in terms of location) is generally available after consultation and in line with upcoming tasks and (on-site) appointments Vacation: You will receive 30 days of vacation (depending on the chosen working time model) plus additional days off (e.g. between Christmas and New Year's) Flexibility: Flexible working time models, including options close to full-time , allow you to tailor your working hours to suit your individual needs Knowledge & further training: Your professional development is important to us – we provide targeted, individual support Health & well-being: Your health is important to us. You can look forward to a comprehensive occ

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