£107.73

Springer Renormalization Group Theory: Experimental Magnetism

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Description

Explore the fundamental shifts in condensed matter physics with Renormalization Group Theory: Impact on Experimental Magnetism. This volume from the Springer Series in Materials Science, Volume 127, examines the evolution of physical theories from early models to modern understandings of continuous solids. Before the development of renormalization group (RG) theory, frameworks like spin wave theory of magnetism and BCS theory of superconductivity focused primarily on atomistic interactions. However, these models often overlooked the energy degrees of freedom found in continuous, infinite solids. This book addresses that gap by discussing the work of Nobel Prize winner Kenneth G. Wilson, who identified that continuous solids possess a specific symmetry: invariance regarding transformations of the length scale. Readers will learn how this symmetry relates to specific field particles and their characteristic excitation spectra. This text provides a necessary bridge between traditional atomistic theories and the modern RG approach, making it a valuable resource for those studying the physics of magnetism and the mathematical symmetries that govern material properties.

Key Features

Examines the transition from early spin wave and BCS theories to modern renormalization group applications in magnetism.

Discusses the importance of length scale transformation symmetry in continuous solids as established by Kenneth G. Wilson.

Provides insight into how specific field particles and excitation spectra are characterized through RG theory.

Part of the professional Springer Series in Materials Science, Volume 127, for academic and research use.

Analyzes the limitations of models that only consider atomistic interactions without accounting for energy degrees of freedom.

Product Specifications

Format
paperback
Domain
Amazon UK
Release Date
14 March 2012
Listed Since
08 March 2012

Barcode

No barcode data available

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