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Forschungszentrum Jülich GmbH invites applications for a position in the JARA-Institute for Quantum Information (PGI-11). The role focuses on experimentally demonstrating coherent spin shuttling and high-fidelity qubit control using Si/SiGe quantum devices.
You will work on spin coherence characterization, shuttle-based chip demonstrations, and scaling architectures with 2D connectivity, mentoring students and collaborating internationally.
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. https://www.youtube.com/watch?v=0tWaplC4FVs
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:
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:
We welcome applications from people with diverse backgrounds, e.g. in terms of age, gender, disability, sexual orientation / identity, and social, ethnic and religious origin. A diverse and inclusive working environment with equal opportunities in which everyone can realize their potential is important to us.
**Application Deadline:**The position will be published until it is successfully filled