Master Thesis: Stress Analysis in NV-Doped Diamond Using ODMR for Quantum Technologies
Indexed description
In the field of quantum technology, the institute is working on the realization of a quantum computer based on color centers in diamond. We use nitrogen-vacancy (NV) centers as qubits, which are created during diamond growth via micorwave-assisted CVD, and characterized and controlled using in-house experimental set-ups.
The purpose of this Master thesis opportunity is to establish and further develop a measurement and analysis chain for the quantative stress analysis NV-doped diamond by carrying out and evaluating ODMR measurements and linking them with suitable models in order to determine local stress components and inhomogeneities in diamond structures. The goal is to quantify stress as a quality and process parameter for the fabrication and optimization of diamond samples and structures for quantum technologies.
What You Will Do
- conduct and optimize ODMR measurements on NV centers (e.g. using confocal microscopy)
- develop measurement protocols for stress mapping (e.g. angle/polarization dependencies, magnetic field configurations, reference measurements)
- evaluate ODMR spectra and derive local stress parameters
- implement and document analysis workflows in Python (automation, visualization of stress maps, reproducible pipelines)
- enrolled as a student in the field of physics, microsystems technology or a comparable discipline
- programming skills in Python (ideally for data anlysis, fitting and plotting workflows)
- good language skills in German or English
- enjoyment of experimental and scientific work
- team spirit, open-mindedness and motivation to work independantly and goal-oriented
- modern laboratory equipment in a new laboratory building
- on-site support from experts
- flexible time management that fits your studies
- collaboration in an interdisciplinary team, including working on current projects with clear objectives
- an open and team-oriented corporate culture that offers you the opportunity to contribute your own ideas
- diverse and exciting tasks in the environment of an internationally renowned research institution
- Frelo station (bike renting system) and parking spaces with charging stations
With its focus on developing key technologies that are vital for the future and enabling the commercial utilization of this work by business and industry, Fraunhofer plays a central role in the innovation process. As a pioneer and catalyst for groundbreaking developments and scientific excellence, Fraunhofer helps shape society now and in the future.
Interested? Apply online now. We look forward to getting to know you!
If you have any questions regarding the position, please contact:
Dr. Volker Cimalla
Fraunhofer Institute for Applied Solid State Physics IAF
www.iaf.fraunhofer.de
Requisition Number: 84587
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