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    发布时间:2018-10-30 10:34:54    点击:704

学术报告


题  目:Simulating Strongly Correlated Quantum Systems
报告人:Prof. Ulrich Schollwock (University of Munich , Department of Physics)
时  间:2018年11月8日(星期四)上午10:30
地  点:仙林化学楼H201报告厅

Abstract:
In quantum many-body systems, the simulation of the static and dynamical properties of strongly correlated quantum systems (such as frustrated quantum magnets, transition metal oxides, rare earths) has been an enormous challenge even at the level of model systems, let alone realistic descriptions. I want to present an introduction into algorithms based on so-called tensor network states which have allowed enormous progress over the last two decades and highlight the central role of the concept of quantum entanglement in understanding quantum many-body systems. Examples will be drawn from solid-state physics and ultracold atomic systems.
 
Biograph:
Prof. Dr. Ulrich Schollwöck, full professor at the University of Munich. Research areas: quantum many-body physics, ultracold atom gases, strongly correlated materials, computational methods. He is born in 1967, Munich, Germany. Studies of physics in Munich (Diploma 1993) and Oxford (Master1991). PhD at the French Department of Atomic Energy (1995). After various positions, associate professor in Munich 2003, full professor at RWTH Aachen University 2004, and again full professor in Munich since 2009. Offers of full professorships at UCLA, Innsbruck, Berlin. Fellow of the American Physical Society; Academy of Science member.

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