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The European Synchrotron, the ESRF, is an international research centre based in Grenoble, France.
Through its innovative engineering, pioneering scientific vision and a strong commitment from its 700 staff members, the ESRF is recognised as one of the top research facilities worldwide. Its particle accelerator produces intense X-ray beams that are used by thousands of scientists each year for experiments in diverse fields such as biology, medicine, environmental sciences, cultural heritage, materials science, and physics.
Supported by 19 countries, the ESRF is an equal opportunity employer and encourages diversity.
Thesis subject: Growth and Characterization of Two-Dimensional Free-standing Functional Oxides
This PhD project focuses on the development of a stable, electron-transparent crystalline platform for advanced in situ transmission electron microscopy (TEM) studies of functional materials during epitaxial growth and under external stimuli such as electric and magnetic fields and light illumination. The platform, developed at PGI-7, enables the fabrication of free-standing single-crystalline membranes that serve as substrates for direct growth and operando TEM investigation of complex oxide materials.
The project will investigate in situ epitaxial growth, oxygen-vacancy ordering, and topotactic phase transitions, e.g. in SrFe(Co)Ox thin films and nanostructures. Using state-of-the-art in situ TEM, electron holography, and electrical and optical biasing, the candidate will study the interplay between crystal growth, atomic structure, ionic transport, and local magnetic properties in real time. The developed platform will enable entirely new experimental approaches for studying functional materials at the atomic scale, while also offering opportunities to explore routes towards commercialization.
The project will be hosted at the Ernst Ruska-Centre for Microscopy and Spectroscopy with Electrons (ER-C) at Forschungszentrum Jülich, one of the world's leading electron microscopy facilities. The ER-C houses an exceptional collection of state-of-the-art electron microscopes and correlative surface science instruments, enabling high-resolution studies of materials and devices with outstanding spatial and energy resolution. Phase contrast techniques available at ER-C are particularly well-suited for studying the local magnetic properties of materials.
This project is a collaboration between ER-C and PGI-7, a leading institute in the synthesis of atomically defined oxide thin films, ionic-electronic property characterization, and materials integration for information technology, incl. neuromorphic computing and quantum materials.
Further information can be obtained from: Dr. Amir H. Tavabi, email: [email protected], Dr. Felix Gunkel, email: [email protected], Prof. Regina Dittmann, Email: [email protected], Prof. Rafal E. Dunin-Borkowski, email: [email protected].
For this 3-year PhD project, the successful candidate will be enrolled in the doctoral school at RWTH Aachen and based full time Forschungszentrum Jülich, other than a secondment of at least two months at an international partner institution. A varied pedagogical training programme will be offered to the successful candidate throughout the Ph.D. project.
L’ESRF (European Synchrotron Radiation Facility) est un exemple remarquable de coopération scientifique européenne.
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