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Tensor Categories and Hopf Algebras (Paperback): Nicolas Andruskiewitsch, Dmitri Nikshych Tensor Categories and Hopf Algebras (Paperback)
Nicolas Andruskiewitsch, Dmitri Nikshych
R3,260 Discovery Miles 32 600 Ships in 12 - 17 working days

This volume contains the proceedings of the scientific session ``Hopf Algebras and Tensor Categories'', held from July 27-28, 2017, at the Mathematical Congress of the Americas in Montreal, Canada. Papers highlight the latest advances and research directions in the theory of tensor categories and Hopf algebras. Primary topics include classification and structure theory of tensor categories and Hopf algebras, Gelfand-Kirillov dimension theory for Nichols algebras, module categories and weak Hopf algebras, Hopf Galois extensions, graded simple algebras, and bialgebra coverings.

Tensor Categories (Paperback): Pavel Etingof, Shlomo Gelaki, Dmitri Nikshych, Victor Ostrik Tensor Categories (Paperback)
Pavel Etingof, Shlomo Gelaki, Dmitri Nikshych, Victor Ostrik
R3,249 Discovery Miles 32 490 Ships in 12 - 17 working days

Is there a vector space whose dimension is the golden ratio? Of course not-the golden ratio is not an integer! But this can happen for generalizations of vector spaces-objects of a tensor category. The theory of tensor categories is a relatively new field of mathematics that generalizes the theory of group representations. It has deep connections with many other fields, including representation theory, Hopf algebras, operator algebras, low-dimensional topology (in particular, knot theory), homotopy theory, quantum mechanics and field theory, quantum computation, theory of motives, etc. This book gives a systematic introduction to this theory and a review of its applications. While giving a detailed overview of general tensor categories, it focuses especially on the theory of finite tensor categories and fusion categories (in particular, braided and modular ones), and discusses the main results about them with proofs. In particular, it shows how the main properties of finite-dimensional Hopf algebras may be derived from the theory of tensor categories. Many important results are presented as a sequence of exercises, which makes the book valuable for students and suitable for graduate courses. Many applications, connections to other areas, additional results, and references are discussed at the end of each chapter.

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