Physics of Structural Phase Transitions, Paperback by Fujimoto, Minoru, Brand...

$ 33.32

Item Length: 9.3 in Book Title: Physics of Structural Phase Transitions Type: Textbook Author: Minoru Fujimoto width: 6.1 in Item Weight: 16 Oz Publication Name: Physics of Structural Phase Transitions Number of Pages: Xiv, 278 Pages ISBN: 9781441923493 Publisher: Springer New York Publication Year: 2010 Subject: Physics / Condensed Matter, Physics / Crystallography, Physics / Mathematical & Computational Language: English Item Width: 6.1 in Format: Trade Paperback Subject Area: Science

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Physics of Structural Phase Transitions, Paperback by Fujimoto, Minoru, Brand.... Physics of Structural Phase Transitions, Paperback by Fujimoto, Minoru, ISBN 1441923497, ISBN-13 9781441923493, Brand New, Free shipping in the US Phase transitions in which crystalline solids undergo structural changes present an interesting problem in the interplay between the crystal structure and the ordering process. This text, intended for readers with some prior knowledge of condensed-matter physics, emphasizes the basic physics behind such spontaneous structural changes in crystals. Starting with the relevant thermodynamic principles, th discusses the nature of order variables and their collective motion in a crystal lattice; in a structural phase transition a singularity in such a collective mode is responsible for the lattice instability, as revealed by soft phonons. This mechanism is analogous to the interplay of a charge-density wave and a periodically deformed lattice in low-dimensional conductors. The text also describes experimental methods for modulated crystal structures and gives examples of structural changes in representative systems. Th is divided into two parts. The first, theoretical, part includes such topics as: the Landau theory of phase transitions; statistics, correlations and the mean-field approximation; pseudospins and their collective modes; soft lattice modes and pseudospin condensates; lattice imperfections and their role in the phase transitions of real crystals. The second part discusses experimental studies of modulated crystals using x-ray diffraction, neutron inelastic scattering, light scattering, dielectric measurements, and magnetic resonance spectroscopy.