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  • Book
  • © 2012

Quantum Triangulations

Moduli Spaces, Strings, and Quantum Computing

  • Authored by leading experts in the field
  • First self-contained exposition of the subject matter
  • Suitable for graduate students and specialists alike
  • Includes supplementary material: sn.pub/extras

Part of the book series: Lecture Notes in Physics (LNP, volume 845)

Table of contents (6 chapters)

  1. Front Matter

    Pages i-xvii
  2. Triangulated Surfaces and Polyhedral Structures

    • Mauro Carfora, Annalisa Marzuoli
    Pages 1-54
  3. Singular Euclidean Structures and Riemann Surfaces

    • Mauro Carfora, Annalisa Marzuoli
    Pages 55-81
  4. Polyhedral Surfaces and the Weil–Petersson Form

    • Mauro Carfora, Annalisa Marzuoli
    Pages 83-114
  5. The Quantum Geometry of Polyhedral Surfaces

    • Mauro Carfora, Annalisa Marzuoli
    Pages 115-174
  6. State Sum Models and Observables

    • Mauro Carfora, Annalisa Marzuoli
    Pages 175-216
  7. Combinatorial Framework for Topological Quantum Computing

    • Mauro Carfora, Annalisa Marzuoli
    Pages 217-254
  8. Back Matter

    Pages 255-284

About this book

Research on polyhedral manifolds often points to unexpected connections between very distinct aspects of Mathematics and Physics. In particular triangulated manifolds play quite a distinguished role in such settings as Riemann moduli space theory, strings and quantum gravity, topological quantum field theory, condensed matter physics, and critical phenomena. Not only do they provide a natural discrete analogue to the smooth manifolds on which physical theories are typically formulated, but their appearance is rather often a consequence of an underlying structure which naturally calls into play non-trivial aspects of representation theory, of complex analysis and topology in a way which makes manifest the basic geometric structures of the physical interactions involved. Yet, in most of the existing literature, triangulated manifolds are still merely viewed as a convenient discretization of a given physical theory to make it more amenable for numerical treatment.

 

The motivation for these lectures notes is thus to provide an approachable introduction to this topic, emphasizing the conceptual aspects, and probing, through a set of cases studies, the connection between triangulated manifolds and quantum physics to the deepest.

 

This volume addresses applied mathematicians and theoretical physicists working in the field of quantum geometry and its applications.  

Reviews

“At several place in mathematics triangulations of 2-manifolds are useful. … It is the goal of this book to give an access to these very interesting applications and relations. … The book makes an inspiring reading for mathematicians and theoretical physicists working in the field.” (Martin Schlichenmaier, zbMATH, Vol. 1326.81003, 2016)

“In this book, the authors present to the readers the rich structures underlying polyhedral surfaces. They discuss their relations with Riemann moduli spaces, noncritical string theory and quantum computing. … This book is a useful resource for mathematicians and physicists working in the field of quantum geometry, three-manifold invariants and string theory.” (Lee-Peng Teo, Mathematical Reviews, January, 2013)

Authors and Affiliations

  • Dipto. Fisica Nucleare e Teorica, Università degli Studi di Pavia, Pavia, Italy

    Mauro Carfora, Annalisa Marzuoli

Bibliographic Information