Finite Size Scaling And Numerical Simulation Of Statistical Systems


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Finite Size Scaling and Numerical Simulation of Statistical Systems


Finite Size Scaling and Numerical Simulation of Statistical Systems

Author: Vladimir Privman

language: en

Publisher: World Scientific Publishing Company Incorporated

Release Date: 1990


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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.

Finite Size Scaling And Numerical Simulation Of Statistical Systems


Finite Size Scaling And Numerical Simulation Of Statistical Systems

Author: Vladimir Privman

language: en

Publisher: World Scientific

Release Date: 1990-01-01


DOWNLOAD





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.

Computer Simulation Studies in Condensed-Matter Physics XVIII


Computer Simulation Studies in Condensed-Matter Physics XVIII

Author: David P. Landau

language: en

Publisher: Springer Science & Business Media

Release Date: 2007-08-02


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Almost two decadesago,becauseof the tremendousincreaseinthe powerand utility of computer simulations,The University of Georgiaformed the ?rst - stitutionalunitdevotedtotheuseofsimulationsinresearchandteaching:The Center for Simulational Physics. As the international simulations community expanded further, we sensed a need for a meeting place for both experienced simulators and neophytes to discuss new techniques and recent results in an environment which promoted lively discussion. As a consequence, the Center for Simulational Physics established an annual workshop on Recent Devel- ments in Computer Simulation Studies in Condensed Matter Physics. This year’s workshop was the eighteenth in this series, and the continued int- est shown by the scienti?c community demonstrates quite clearly the useful purpose that these meetings have served. The latest workshop was held at The University of Georgia, March 7–11, 2005, and these proceedings provide a “status report” on a number of important topics. This volume is published with the goal of timely dissemination of the material to a wider audience. We wish to o?er a special thanks to IBM for partial support of this year’s workshop. This volume contains both invited papers and contributed presentations on problems in both classical and quantum condensed matter physics. We hope that each reader will bene?t from specialized results as well as pro?t from exposure to new algorithms, methods of analysis, and conceptual dev- opments. Athens, GA, USA D. P. Landau October 2005 S. P. Lewis H. -B.