Conformal Invariance And Applications To Statistical Mechanics

Conformal Invariance And Applications To Statistical Mechanics
Title Conformal Invariance And Applications To Statistical Mechanics PDF eBook
Author C Itzykson
Publisher World Scientific
Pages 992
Release 1998-09-29
Genre
ISBN 9814507598

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This volume contains Introductory Notes and major reprints on conformal field theory and its applications to 2-dimensional statistical mechanics of critical phenomena. The subject relates to many different areas in contemporary physics and mathematics, including string theory, integrable systems, representations of infinite Lie algebras and automorphic functions.

Finite Size Scaling And Numerical Simulation Of Statistical Systems

Finite Size Scaling And Numerical Simulation Of Statistical Systems
Title Finite Size Scaling And Numerical Simulation Of Statistical Systems PDF eBook
Author Vladimir Privman
Publisher World Scientific
Pages 530
Release 1990-01-01
Genre
ISBN 9813208767

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The theory of Finite Size Scaling describes a build-up of the bulk properties when a small system is increased in size. This description is particularly important in strongly correlated systems where critical fluctuations develop with increasing system size, including phase transition points, polymer conformations. Since numerical computer simulations are always done with finite samples, they rely on the Finite Size Scaling theory for data extrapolation and analysis. With the advent of large scale computing in recent years, the use of the size-scaling methods has become increasingly important.

Physics Briefs

Physics Briefs
Title Physics Briefs PDF eBook
Author
Publisher
Pages 790
Release 1991
Genre Physics
ISBN

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Finite-Size Scaling

Finite-Size Scaling
Title Finite-Size Scaling PDF eBook
Author J. Cardy
Publisher Elsevier
Pages 385
Release 2012-12-02
Genre Computers
ISBN 0444596062

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Over the past few years, finite-size scaling has become an increasingly important tool in studies of critical systems. This is partly due to an increased understanding of finite-size effects by analytical means, and partly due to our ability to treat larger systems with large computers. The aim of this volume was to collect those papers which have been important for this progress and which illustrate novel applications of the method. The emphasis has been placed on relatively recent developments, including the use of the &egr;-expansion and of conformal methods.

Journal of Physics A

Journal of Physics A
Title Journal of Physics A PDF eBook
Author
Publisher
Pages 772
Release 1999
Genre Mathematical physics
ISBN

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Focuses on fundamental mathematical and computational methods underpinning physics. Relevant to statistical physics, chaotic and complex systems, classical and quantum mechanics, classical and quantum integrable systems and classical and quantum field theory.

Introduction to Conformal Invariance and Its Applications to Critical Phenomena

Introduction to Conformal Invariance and Its Applications to Critical Phenomena
Title Introduction to Conformal Invariance and Its Applications to Critical Phenomena PDF eBook
Author Philippe Christe
Publisher Springer Science & Business Media
Pages 260
Release 2008-09-11
Genre Science
ISBN 3540475753

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The history of critical phenomena goes back to the year 1869 when Andrews discovered the critical point of carbon dioxide, located at about 31°C and 73 atmospheres pressure. In the neighborhood ofthis point the carbon dioxide was observed to become opalescent, that is, light is strongly scattered. This is nowadays interpreted as comingfrom the strong fluctuations of the system close to the critical point. Subsequently, a wide varietyofphysicalsystems were realized to display critical points as well. Ofparticular importance was the observation of a critical point in ferromagnetic iron by Curie. Further examples include multicomponent fluids and alloys, superfluids, superconductors, polymers and may even extend to the quark-gluon plasmaand the early universe as a whole. Early theoretical investigationstried to reduce the problem to a very small number of degrees of freedom, such as the van der Waals equation and mean field approximations and culminating in Landau's general theory of critical phenomena. In a dramatic development, Onsager's exact solutionofthe two-dimensional Ising model made clear the important role of the critical fluctuations. Their role was taken into account in the subsequent developments leading to the scaling theories of critical phenomena and the renormalization group. These developements have achieved a precise description of the close neighborhood of the critical point and results are often in good agreement with experiments. In contrast to the general understanding a century ago, the presence of fluctuations on all length scales at a critical point is today emphasized.

Theory Of Critical Phenomena In Finite-size Systems: Scaling And Quantum Effects

Theory Of Critical Phenomena In Finite-size Systems: Scaling And Quantum Effects
Title Theory Of Critical Phenomena In Finite-size Systems: Scaling And Quantum Effects PDF eBook
Author Jordan G Brankov
Publisher World Scientific
Pages 459
Release 2000-08-21
Genre Science
ISBN 9814494569

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The aim of this book is to familiarise the reader with the rich collection of ideas, methods and results available in the theory of critical phenomena in systems with confined geometry. The existence of universal features of the finite-size effects arising due to highly correlated classical or quantum fluctuations is explained by the finite-size scaling theory. This theory (1) offers an interpretation of experimental results on finite-size effects in real systems; (2) gives the most reliable tool for extrapolation to the thermodynamic limit of data obtained by computer simulations; (3) reveals the intimate mechanism of how the critical singularities build up in the thermodynamic limit; and (4) can be fruitfully used to explain the low-temperature behaviour of quantum critical systems.The exposition is given in a self-contained form which presumes the reader's knowledge only in the framework of standard courses on the theory of phase transitions and critical phenomena. The instructive role of simple models, both classical and quantum, is demonstrated by putting the accent on the derivation of rigorous and exact analytical results.