Finitely Correlated States Driven by Topological Dynamics
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Explore the intersection of quantum field theory and topological phases through a focused examination of finitely correlated states and their relationship to topological dynamics. Learn how topological dynamics drive the behavior of finitely correlated quantum states, with particular emphasis on their mathematical foundations and physical implications. Discover the connections between homotopy theory, operator algebras, and quantum many-body systems as presented by a researcher from Michigan State University. Gain insights into advanced concepts in mathematical physics that bridge topology and quantum mechanics, suitable for graduate students and researchers working in quantum field theory, condensed matter physics, or mathematical physics.
Syllabus
Eric Roon | Finitely Correlated States Driven by Topological Dynamics
Taught by
Harvard CMSA