Master Thesis - Heat transfer in cables when operating qubits at cryogenic temperatures

Helmholtz Information & Data Science Academy

Jülich

Hybrid

EUR 30.000 - 60.000

Vollzeit

14 Tage+
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Benefits dieser Stelle

Flexible Arbeitszeiten
Fachliche Unterstützung
Moderne technische Ausstattung
Interdisziplinäre Zusammenarbeit
Großer Forschungs-Campus
Möglichkeit für Homeoffice

Zusammenfassung

Ein innovatives Institut bietet Ihnen die Möglichkeit, an einem interdisziplinären Masterprojekt zu arbeiten, das sich mit der Wärme- und Signalübertragung durch Kabel in quantentechnologischen Anwendungen befasst. Sie werden ein Modell entwickeln, das die Wärmeübertragung in Abhängigkeit von Material, Länge und Temperatur berechnet und somit einen wertvollen Beitrag zur Forschung in der Quanteninformatik leistet. Diese spannende Gelegenheit ermöglicht es Ihnen, praktische Erfahrungen in einem engagierten und internationalen Team zu sammeln, während Sie an einem gesellschaftlich relevanten Thema arbeiten. Flexible Arbeitszeiten und die Möglichkeit, remote zu arbeiten, bieten Ihnen die ideale Balance zwischen Studium und Forschung.

Qualifikationen

  • Bachelorabschluss oder gleichwertig in Elektrotechnik, Physik oder Maschinenbau.
  • Grundkenntnisse in integrierter Schaltungstechnik sind von Vorteil.

Aufgaben

  • Untersuchung des Wärme- und Signaltransfers durch Kabel in verschiedenen Temperaturen.
  • Erstellung eines Modells zur Berechnung des Wärmeübergangs.

Kenntnisse

Interdisziplinäres Arbeiten
Modellierung von Systemen
Integrierte Schaltungstechnik
Quantum Computing

Ausbildung

Bachelor in Elektrotechnik
Bachelor in Physik
Bachelor in Maschinenbau

Jobbeschreibung

At the Peter Grünberg Institute - Integrated Computing Architectures (PGI-4), we are at the forefront of designing scalable, integrated circuits (ICs) that drive and read semiconductor spin qubits at cryogenic temperatures. As part of the institute, our group focuses specifically on system-level design and modeling of the electronics and setups. We provide the critical interface between the quantum domain and state-of-the-art IC design and work with cryogenic measurement setups.

Your Job:

In this interdisciplinary Master project, you are going to investigate the heat and signal transfer through cables that connect qubit control and readout electronics at different temperatures. The temperature range is between room temperature and all the way to below one Kelvin. The thesis includes creating a model that:

  • Takes the cross-section of a cable with specifc materials as variables
  • Makes it possible to vary length and temperatures of both end of the cable
  • Calculates the corresponding heat transfer of the cable


Since thermal conductivity typically changes greatly with temperature, the heat conductance calculation would have to be solved differentially or the length of the cable would have to be divided into subsections that are small enough for a constant temperature to be assumed on the sections.

Your Profile:

  • Bachelor`s degree or equivalent in electrical engineering, physics, mechanical engineering, or a related field
  • A basic knowledge of integrated circuit design, system-level modeling, or computer architectures or even quantum computers can be helpful but is not necessary
  • Enthusiasm for unconventional, interesting interdisciplinary work - especially at the intersection of electronics and quantum technology

Our Offer:

We work on the very latest issues that impact our society and are offering you the chance to actively help in shaping the change! We support you in your work with:

  • An interesting and socially relevant topic for your thesis with future-oriented themes
  • Ideal conditions for gaining practical experience alongside your studies
  • An interdisciplinary collaboration on projects in an international, committed and collegial team
  • Excellent technical equipment and the newest technology
  • Qualified support through your scientific colleagues
  • The chance to independently prepare and work on your tasks
  • Flexible working hours as well as a reasonable remuneration
  • A large research campus with green spaces, offering the best possible means for networking with colleagues and pursuing sports alongside work
  • Flexible work (location) arrangements, e.g. remote work

In addition to exciting tasks and a collaborative working atmosphere in Jülich, we have a lot more to offer: 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.

We look forward to receiving your application. The job will be advertised until the position has been successfully filled. You should therefore submit your application as soon as possible.

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