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Operator Algebras and Applications: Volume 1, Structure Theory; K-theory, Geometry and Topology (Paperback): David E. Evans,... Operator Algebras and Applications: Volume 1, Structure Theory; K-theory, Geometry and Topology (Paperback)
David E. Evans, Masamichi Takesaki
R1,564 Discovery Miles 15 640 Ships in 12 - 17 working days

These volumes form an authoritative statement of the current state of research in Operator Algebras. They consist of papers arising from a year-long symposium held at the University of Warwick. Contributors include many very well-known figures in the field.

Operator Algebras and Applications: Volume 2 (Paperback): David E. Evans, Masamichi Takesaki Operator Algebras and Applications: Volume 2 (Paperback)
David E. Evans, Masamichi Takesaki
R1,537 Discovery Miles 15 370 Ships in 12 - 17 working days

These volumes form an authoritative statement of the current state of research in Operator Algebras. They consist of papers arising from a year-long symposium held at the University of Warwick. Contributors include many very well-known figures in the field.

Quantum Symmetries on Operator Algebras (Hardcover): David E. Evans, Yasuyuki Kawahigashi Quantum Symmetries on Operator Algebras (Hardcover)
David E. Evans, Yasuyuki Kawahigashi
R10,968 Discovery Miles 109 680 Ships in 12 - 17 working days

In the last 20 years, the study of operator algebras has developed from a branch of functional analysis to a central field of mathematics with applications and connections with different areas in both pure mathematics (foliations, index theory, K-theory, cyclic homology, affine Kac-Moody algebras, quantum groups, low dimensional topology) and mathematical physics (integrable theories, statistical mechanics, conformal field theories and the string theories of elementary particles). The theory of operator algebras was initiated by von Neumann and Murray as a tool for studying group representations and as a framework for quantum mechanics, and has since kept in touch with its roots in physics as a framework for quantum statistical mechanics and the formalism of algebraic quantum field theory. However, in 1981, the study of operator algebras took a new turn with the introduction by Vaughan Jones of subfactor theory and remarkable connections were found with knot theory, 3-manifolds, quantum groups and integrable systems in statistical mechanics and conformal field theory. The purpose of this book, one of the first in the area, is to look at these combinatorial-algebraic developments from the perspective of operator algebras; to bring the reader to the frontline of research with the minimum of prerequisites from classical theory.

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