Master Thesis - Cryogenic Analog Demultiplexer for Scalable Electron-Spin Qubit Control

Forschungszentrum Jülich

Jülich

Vor Ort

EUR 12.000 - 17.000

Vollzeit

14 Tage+
Bewerbungsgenerator

Verschicke keinen generischen Lebenslauf — erstelle einen Lebenslauf und ein Anschreiben, die genau auf diese Rolle zugeschnitten sind.

Schaffe es an den ATS-Filtern vorbei

Benefits dieser Stelle

Flexible working hours
Campus experience
Mentorship in a small group
PhD opportunities after Masters

Zusammenfassung

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

Qualifikationen

  • Bachelor’s degree and enrollment in a Master’s program in a related field.
  • Basic understanding of device physics and analog/mixed-signal electronics.
  • Familiarity with Cadence Virtuoso or equivalent circuit design tools is helpful.
  • Willingness to work across disciplines at the interface of IC design and quantum-technology needs.

Aufgaben

  • Design, model, and simulate cryogenic control electronics for scalable electron-spin qubit systems.
  • Develop models and circuit designs to minimize wiring, heat load, and noise at millikelvin temperatures.
  • Create Python-based models for integration into quantum-mechanical simulations.
  • Evaluate cryogenic demultiplexer and switch-capacitor topologies via circuit-level simulations including parasitics.

Kenntnisse

Device physics basics
Analog/mixed-signal electronics
Python basics
Git basics

Ausbildung

Bachelor’s degree in electrical engineering or related field
Currently enrolled in a Master’s program in electrical engineering, physics, or related field

Tools

Cadence Virtuoso

Jobbeschreibung

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.

Your Job

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:

  • Investigate cryogenic behavior of transistors, switches, and capacitors including relevant noise mechanisms (leakage, charge injection, kT/C, etc.)
  • Analyze how noise from cryogenic control electronics couples into gate electrodes and affects control accuracy in Si/SiGe spin-qubit systems
  • Develop compact Python-based models of these electronics for integration into quantum-mechanical simulations
  • Design and evaluate cryogenic demultiplexer and switch-capacitor topologies through circuit-level simulations including parasitics

The goal is to enable scalable, low-noise control architectures for future multi-qubit systems.

Your Profile
  • Bachelor’s degree and currently enrolled in a Master’s program in electrical engineering, physics, or a closely related field
  • Basic understanding of device physics, analog/mixed-signal electronics, and circuit design in Cadence Virtuoso
  • Motivation to work across disciplines, particularly at the interface of integrated-circuit design and quantum-technology requirements
  • Basic knowledge of Python and Git is helpful but not required
  • Very good command of written and spoken English with extensive vocabulary is required (at least B2 level according to the CEFR
Benefits for You
  • Cutting-edge research: You will work on challenges at the intersection of IC design and quantum computing, helping to shape the next generation of quantum processors.
  • Meaningful Tasks: Your thesis deals with a future-oriented, socially relevant topic with direct practical relevance in an international environment
  • Practical relevance: With us, you will gain valuable practical experience alongside your studies and actively participate in interdisciplinary projects
  • Scientific environment: You can expect excellent scientific equipment, modern technologies, and qualified support from experienced colleagues. On top, you will benefit from direct mentorship in a small group.
  • Flexibility: Flexible working hours make it easier for you to balance work and study
  • Campus experience: Our research campus in the countryside creates ideal conditions for collegial exchange and sporting activities right on site. Our cafeteria offers a wide range of options—you can enjoy a relaxing lunch break with a lake view
  • Perspective: If you have the appropriate qualifications and funding is available, the institute offers the opportunity to do your PhD after completing your master's thesis
  • Fair remuneration: We will pay you a reasonable remuneration for your thesis
Join Us

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

Place of Employment

Jülich

Start Date

To the next possible date

Salary

We will pay you an appropriate remunerationfor your thesis

Application Deadline

The position will be published until it is successfully filled.

Index number

2026M-0652

Application Process
FAQ
Contact form
Career portal
Forschungszentrum Jülich GmbH
Legal Notice
Hol dir deinen kostenlosen, vertraulichen Lebenslauf-Check.
oder ziehe deine Datei hierhin.
Similar jobs

Ähnliche Jobs, die dir auch gefallen könnten

Master Thesis - Cryogenic Analog Demultiplexer for Scalable Electron-Spin Qubit Control
Master Thesis - Cryogenic Analog Demultiplexer for Scalable Electron-Spin Qubit Control

Forschungszentrum Jülich GmbH • Jülich

Vor Ort
Confidential
Flexible working hours
Campus environment
Mentorship
Master Thesis - Cryogenic Analog Demultiplexer for Scalable Elect...
Master Thesis - Cryogenic Analog Demultiplexer for Scalable Elect...

Forschungszentrum Jülich GmbH P-VA Personalabrechnung • Jülich

Vor Ort
EUR 13.000 - 20.000
Master Thesis - Heat transfer in cables when operating qubits at cryogenic temperatures
Master Thesis - Heat transfer in cables when operating qubits at cryogenic temperatures

Helmholtz Information & Data Science Academy • Jülich

Hybrid
EUR 30.000 - 60.000
Flexible Arbeitszeiten
Fachliche Unterstützung
Moderne technische Ausstattung
+3
Postdoc - scalable, shuttle-based spin-qubit quantum-chips
Postdoc - scalable, shuttle-based spin-qubit quantum-chips

Forschungszentrum Jülich GmbH • Jülich

Vor Ort
EUR 55.000 - 70.000
Meaningful tasks
Work-life balance
Vacation 30 days
+10
PhD-Position - Development of scalable superconducting quantum systems
PhD-Position - Development of scalable superconducting quantum systems

Forschungszentrum Jülich GmbH • Aachen

Vor Ort
EUR 50.000 - 60.000
30 days of annual leave
Flexible working hours
Health management program
Postdoc - scalable, shuttle-based spin-qubit quantum-chips
Postdoc - scalable, shuttle-based spin-qubit quantum-chips

Forschungszentrum Jülich GmbH • Aachen

Vor Ort
EUR 55.000 - 90.000
30 Urlaubstage
Flexible Arbeitszeiten
Weiterbildungsmöglichkeiten
+2
PhD-Position - Development of scalable superconducting quantum systems
PhD-Position - Development of scalable superconducting quantum systems

Forschungszentrum Jülich GmbH • Jülich

Vor Ort
EUR 45.000 - 60.000
30 days of annual leave
Flexible working hours
Health management programmes
+1
PhD-Position - Development of scalable superconducting quantum systems
PhD-Position - Development of scalable superconducting quantum systems

recruiting.fz-juelich.de - Jobboard • Aachen

Vor Ort
EUR 45.000 - 55.000
30 days of annual leave
Health management program
Flexible working hours
+1
PhD-Position - Development of scalable superconducting quantum systems
PhD-Position - Development of scalable superconducting quantum systems

Forschungszentrum Jülich • Jülich

Vor Ort
EUR 50.000 - 70.000
30 days annual leave
Comprehensive health and well-being program
Support for doctoral studies
+1
Postdoc - scalable, shuttle-based spin-qubit quantum-chips
Postdoc - scalable, shuttle-based spin-qubit quantum-chips

Forschungszentrum Jülich • Jülich

Vor Ort
EUR 54.000 - 66.000
Flexible Arbeitszeiten
Weiterbildungsprogramme