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Dienstag, 25.10.2022

Antrittsvorlesung

Antrittsvorlesung Univ.-Prof. Dr. Tracy Eleanor Northup und Univ.-Prof. Dr. Alexander Kendl

16:00 - 18:00 Uhr
Hörsaal B, NATWI-Gebäude, Campus Technik, Technikerstraße 25, 6020 Innsbruck


Anmeldung ist erforderlich; Anmeldung beim Veranstalter bis 18.10.22

Eintritt / Kosten: Keine

Vortragende/r

Univ.-Prof. Dr. Tracy Eleanor Northup, Univ.-Prof. Dr. Alexander Kendl

Weitere Informationen

Die Antrittsvorlesung von Tracy Northup widmet sich dem Thema "Quantum interfaces: encoding information in atoms, light, and motion":

Thanks to quantum physics, it is possible to encode information in the electrons that orbit atoms, in a single particle of light, or in the motion of a nanoparticle. These encodings are expected to enable powerful new technologies for computing, for secure communication, and for precision sensing. A particular challenge for future quantum technologies lies in the transfer of information between different encodings, for example, between atoms and light. We will examine one promising solution: an optical resonator as a quantum interface. Recently, with the help of such an interface, two atoms in different buildings on the University of Innsbruck campus have been entangled with one another. We will discuss how such entanglement lays the foundation for a future quantum internet.

Die Antrittsvorlesung von Alexander Kendl trägt den Titel "Nonlinear dynamics: predicting "weather", "climate" and tipping points in fusion plasma"

Turbulence in fluids often sets in above a critical control parameter threshold, and a succession of state bifurcations. For many hydrodynamic instabilities the nonlinearities primarily saturate an initial growth. Less known are the roles of secondary instabilities for turbulent structures in quasi two-dimensional fluids. These can transform chaotic into ordered states through predator-prey type coupling between fast turbulent vortices and long-lived zonal flows, or jet streams. Such kind of nonlinear dynamics in the atmosphere was the cause of this year's extreme summer heat. The very same phenomenon, in local turbulent "weather" of a heated magnetized plasma, can trigger sudden transition into a, desired, warmer global "climate" state of high confinement in fusion experiments. Recent improved models and results are discussed, which facilitate predictive simulations of plasma turbulence, transitions, and the elusive tipping elements in experiments on fusion energy.

Um Anmeldung bis spätestens 18. Oktober 2022 wird gebeten unter: Lisa.Obojes@uibk.ac.at

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Universität Innsbruck

Institut für Ionenphysik und Angewandte Physik
Technikerstr. 25/3

Institut für Experimentalphysik
Technikerstraße 25/4 bzw. 25/2