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Mit 1.10.2022 ist die Fakultät für Physik in der TUM School of Natural Sciences mit der Webseite https://www.nat.tum.de/ aufgegangen. Unter Umstellung der bisherigen Webauftritte finden Sie weitere Informationen.

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Quantenmaterialien für die Elektronik und Optik
Quantum Materials for Electronics and Optics

Lehrveranstaltung 0000001823 im SS 2022

Basisdaten

LV-Art Proseminar
Umfang 2 SWS
betreuende Organisation Nanotechnologie und Nanomaterialien
Dozent(inn)en Alexander Holleitner
Mitwirkende:
Christoph Kastl
Termine Fr, 14:00–15:30, ZNN 0.001

Zuordnung zu Modulen

weitere Informationen

Lehrveranstaltungen sind neben Prüfungen Bausteine von Modulen. Beachten Sie daher, dass Sie Informationen zu den Lehrinhalten und insbesondere zu Prüfungs- und Studienleistungen in der Regel nur auf Modulebene erhalten können (siehe Abschnitt "Zuordnung zu Modulen" oben).

ergänzende Hinweise Within the seminar "Quantum Materials for Electronics and Optics", students will learn about and present examples from the fascinating world of two-dimensional quantum materials ranging from their fundamental electronic and optical properties to their potential application in the context of quantum science and technology. A particular focus will be atomically thin semiconductors and semimetals, which realize truly two-dimensional electron systems with emergent quantum electronic and optical properties. The content of the seminar is focussed on the following topics:• Lithography and fabrication approaching the atomic scale using two-dimensional quantum materials.• Light-matter interactions and excitons in two-dimensional semiconductors.• Many-body excitonic quantum phenomena in heterostructures of two-dimensional semiconductors, such as Bose Einstein condensation or superradiance.• Single atom defects in two-dimensional materials for quantum technological applications, such as room temperature single photon sources or spin-to-photon interfaces.• Topological and Berry curvature driven electronic phenomena in low-dimensional quantum materials with broken symmetries, such as the quantum spin Hall or non-linear Hall effect, and their application quantum electronics.• Magnetic and spin-orbit proximity effects in heterostructures for electronic control of spin and magnetism.• Ultrafast THz electronics, light-matter interactions, and integration of novel quantum materials into on-chip THz circuits.The seminar consists of topical introductions, student presentations, and scientific discussions related to the presentation. You will get support in the preparation of your talks from the research group on Nanotechnology and Nanomaterials at the Center for Nanotechnology and Nanomaterials (ZNN).
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