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Forschungszentrum Jülich's Peter Grünberg Institute invites a Master student to design, model, and simulate cryogenic control electronics for scalable electron-spin qubit systems. The project focuses on multi-qubit control with minimal wiring, heat load, and noise at millikelvin temperatures.
You will develop compact Python-based models for integration into quantum-mechanical simulations, study cryogenic device behavior, and evaluate circuit topologies through simulations, contributing to future
At the Peter Grünberg Institute - Integrated Computing Architectures (PGI-4/ICA), we design integrated circuits that enable scalable control and readout of semiconductor spin qubits at cryogenic temperatures. A key challenge in quantum computing is the efficient control of many qubits under strict constraints on wiring, heat load, noise, and area.
Our group focuses on system-level design and modeling of cryogenic electronics, bridging quantum devices and advanced IC design. We develop and analyze electronic architectures that operate in close interaction with experimental setups, providing the foundation for scalable quantum processors.
In this interdisciplinary Master project, you will design, model, and simulate cryogenic control electronics for scalable electron-spin qubit systems. The core challenge is enabling multi-qubit control while minimizing wiring overhead, heat load, and noise at millikelvin temperatures.
The thesis includes developing models, circuit designs, and simulation frameworks that:
The goal is to enable scalable, low-noise control architectures for future multi-qubit systems.
and help define the electronic and quantum architectures that will drive the future of scalable quantum computing. You'll be part of a supportive, world-class environment in this rapidly growing field.
In addition to exciting tasks and a collegial working environment, we offer you much more:
https://go.fzj.de/benefits
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.
The following links provide further information on diversity and equal opportunities:
https://go.fzj.de/equality
and on specific support options for women: https://go.fzj.de/womens-job-journey
Jülich
To the next possible date
We will pay you an appropriate remunerationfor your thesis
The position will be published until it is successfully filled.
2026M-0652