Computer Simulation Studies in Condensed-Matter Physics V [E-Book] : Proceedings of the Fifth Workshop Athens, GA, USA, February 17–21, 1992 / edited by David P. Landau, K. K. Mon, Heinz-Bernd Schüttler.
As the role of computer simulations began to increase in importance, we sensed a need for a "meeting place" for both experienced simulators and neophytes to discuss new techniques and results in an evironment which promotes extended discussion. As a consequence of these concerns, The Cente...
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Full text |
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Personal Name(s): | Landau, David P., editor |
Mon, K. K., editor / Schüttler, Heinz-Bernd, editor | |
Imprint: |
Berlin, Heidelberg :
Springer,
1993
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Physical Description: |
VIII, 197 p. online resource. |
Note: |
englisch |
ISBN: |
9783642780837 |
DOI: |
10.1007/978-3-642-78083-7 |
Series Title: |
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Springer Proceedings in Physics ;
75 |
Subject (LOC): |
- Computer Simulation Studies in Condensed-Matter Physics: An Introduction
- I Classical Systems
- Application of Finite-Size Scaling to Phase Transitions and Localization-Delocalization Transitions
- Generically Singular Correlations in a Non-Equilibrium Steady-State System
- The Gauge Glass Transition
- Sandpile Models: Why We Study Them, What Have We Learned?
- II Quantum Systems
- Quantum Monte-Carlo Simulations for Disordered Bose Systems
- Dynamics of Two-Dimensional Quantum Spin Systems
- Pseudopotential Quantum Monte Carlo for Large-Z Atom Systems
- III New Environments for Scientific Computing
- On the Effectiveness of Cluster Environments for Scientific Computing
- IV Contributed Papers
- Layer-by-Layer Film Growth in the Absence of Surface Diffusion
- From 2 to 3 Dimensions — Crossover in the XY Model
- Multimagnetical Simulations
- The 2d/3D Classical Heisenberg Ferromagnet
- Monte-Carlo Simulations in Adiabatic Ensembles
- Dynamics of Acoustic Phonon Decay: Experiment and Simulation
- Roll Pattern Evolution in Molecular Dynamics Studies of Convection
- Interface Growth with Quenched Randomness
- Mode-Coupling Theory and Simulations of a Running Sandpile Model
- Computer Simulations of Optical Dephasing of Paragmagnetic Ions
- Index of Contributors.