Mathematical quantum theory I : field theory and many-body theory

Contributor(s): Feldman, Joel S | Froese, Richard Gerd | Rosen, Lon MMaterial type: Computer fileComputer fileSeries: CRM Proceedings and Lecture Notes ; v. 7Publication details: Providence, RI : American Mathematical Society, c1994Description: 1 online resource (vii, 234 p. : ill.)ISBN: 9781470439217 (online)Subject(s): Many-body problem | Quantum field theoryOnline resources: Click here to access online
Contents:
Weak perturbations of Gaussian measures ; Fermionic many-body models ; Conformal field theory and geometry of strings ; Cluster expansions with small/large field conditions ; Percolation theory and the phase structure of two-dimensional classical ferromagnets ; Navier and Stokes meet the wavelet, II ; Applications of the renormalization group ; End-to-end distance for a four-dimensional self-avoiding walk ; The Falicov-Kimball model of interacting electrons ; Radiative decay of an atom in a massless quantised field ; The Knizhnik-Zamolodchikov-Bernard equation on the torus ; Dual potentials of free Dirac currents as exactly soluble models
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Proceedings of the Canadian Mathematical Society Annual Seminar on Mathematical Quantum Theory held in Vancouver, August 4-14, 1993--Pref.

Includes bibliographical references.

Weak perturbations of Gaussian measures ; Fermionic many-body models ; Conformal field theory and geometry of strings ; Cluster expansions with small/large field conditions ; Percolation theory and the phase structure of two-dimensional classical ferromagnets ; Navier and Stokes meet the wavelet, II ; Applications of the renormalization group ; End-to-end distance for a four-dimensional self-avoiding walk ; The Falicov-Kimball model of interacting electrons ; Radiative decay of an atom in a massless quantised field ; The Knizhnik-Zamolodchikov-Bernard equation on the torus ; Dual potentials of free Dirac currents as exactly soluble models

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