Defect Evolution in Cosmology and Condensed Matter: Quantitative Analysis with the Velocity-Dependent One-Scale Model (SpringerBriefs in Physics)
Defect Evolution in Cosmology and Condensed Matter delivers a quantitative examination using the velocity-dependent one-scale model. It addresses defect dynamics in cosmological and condensed matter settings, providing a unified analytical perspective for physicists studying topological structures and their evolution.
About This Book
This SpringerBrief explores the evolution of defects in both cosmological and condensed matter contexts through a rigorous quantitative approach.
The velocity-dependent one-scale model serves as the central framework for analyzing these phenomena, enabling precise predictions and comparisons.
By bridging cosmology and condensed matter physics, the book highlights shared principles in defect dynamics.
Authored by C.J.A.P. Martins, it contributes to the understanding of complex systems in theoretical physics.
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