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Peter Suranyi 87th Birthday Festschrift

A Life in Quantum Field Theory

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  • 354 pages
  • 13 hours of reading

More about the book

This is a Festschrift compiled in honor of Professor Peter Suranyi, Professor Emeritus, University of Cincinnati. In a long career spanning almost 60 years, Professor Suranyi has made valuable contributions in many areas of theoretical physics, especially in the fields of strong interaction physics, quantum field theory, particle physics, statistical mechanics, lattice field theory, condensed matter physics, and particle cosmology. His important contributions range from analysis of Regge poles in quantum field theory, work on Reggeon field theory, developing improved perturbation theory methods and numerical simulation techniques, analyzing rigidity percolation and molecular clustering in network glasses, to his recent work on Bose condensate dark matter. This volume is our way of paying tribute to his scientific achievements, mentoring prowess, and his rigorous outlook on theoretical physics.

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Peter Suranyi 87th Birthday Festschrift, Philip C. Argyres, Gerald Dunne, G. W. Semenoff, L. C. Rohana Wijewardhana, Peter Suranyi

Language
Released
2022
Binding
(Hardcover),
Book condition
Very Good
Price
€107.99

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Title
Peter Suranyi 87th Birthday Festschrift
Subtitle
A Life in Quantum Field Theory
Language
English
Released
2022
Format
Hardcover
Pages
354
ISBN10
9811262349
ISBN13
9789811262340
Series
Description
This is a Festschrift compiled in honor of Professor Peter Suranyi, Professor Emeritus, University of Cincinnati. In a long career spanning almost 60 years, Professor Suranyi has made valuable contributions in many areas of theoretical physics, especially in the fields of strong interaction physics, quantum field theory, particle physics, statistical mechanics, lattice field theory, condensed matter physics, and particle cosmology. His important contributions range from analysis of Regge poles in quantum field theory, work on Reggeon field theory, developing improved perturbation theory methods and numerical simulation techniques, analyzing rigidity percolation and molecular clustering in network glasses, to his recent work on Bose condensate dark matter. This volume is our way of paying tribute to his scientific achievements, mentoring prowess, and his rigorous outlook on theoretical physics.