
Theoretical physics is a cornerstone of modern physics and provides a foundation for all modern quantitative science. It aims to describe all natural phenomena using mathematical theories and models, and in consequence develops our understanding of the fundamental nature of the universe. This books offers an overview of major areas covering the recent developments in modern theoretical physics. Each chapter introduces a new key topic and develops the discussion in a self-contained manner. At the same time the selected topics have common themes running throughout the book, which connect the independent discussions. The main themes are renormalization group, fixed points, universality, and continuum limit, which open and conclude the work. The development of modern theoretical physics has required important concepts and novel mathematical tools, examples discussed in the book include path and field integrals, the notion of effective quantum or statistical field theories, gauge theories, and the mathematical structure at the basis of the interactions in fundamental particle physics, including quantization problems and anomalies, stochastic dynamical equations, and summation of perturbative series.
This text investigates the mathematical frameworks and physical models that underpin modern theoretical physics, specifically focusing on the intersection of random walks, random matrices, and field theory. Jean Zinn-Justin, a prominent physicist known for his work in quantum field theory and critical phenomena, synthesizes complex concepts into a cohesive pedagogical structure. The book argues that disparate physical phenomena can be unified through shared mathematical structures such as renormalization group theory and universality, providing a rigorous foundation for understanding the fundamental nature of the universe.
What You Will Find
Scope Limits
Experts and graduate students frequently cite this work as a rigorous and authoritative resource for mastering the mathematical machinery of modern theoretical physics. Readers often note the high level of technical density, which requires significant background in advanced calculus and quantum mechanics to fully comprehend.
Page Count:
544
Publication Date:
2019-01-01
Publisher:
OUP Oxford
ISBN-10:
0191091685
ISBN-13:
9780191091681
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