๐”– Scriptorium
โœฆ   LIBER   โœฆ

๐Ÿ“

Monte Carlo Methods in Quantum Problems

โœ Scribed by U. Helmbrecht, John G. Zabolitzky (auth.), Malvin H. Kalos (eds.)


Publisher
Springer Netherlands
Year
1984
Tongue
English
Leaves
291
Series
NATO ASI Series 125
Edition
1
Category
Library

โฌ‡  Acquire This Volume

No coin nor oath required. For personal study only.

โœฆ Synopsis


Monte Carlo methods have been a tool of theoretical and computational scientists for many years. In particular, the invention and percolation of the algorithm of Metropolis, Rosenbluth, Rosenbluth, Teller, and Teller sparked a rapid growth of applications to classical statistical mechanics. Although proposals for treatment of quantum systems had been made even earlier, only a few serious calculations had heen carried out. Ruch calculations are generally more consuming of computer resources than for classical systems and no universal algorithm had--or indeed has yet-- emerged. However, with advances in techniques and in sheer computing power, Monte Carlo methods have been used with considerable success in treating quantum fluids and crystals, simple models of nuclear matter, and few-body nuclei. Research at several institutions suggest that they may offer a new approach to quantum chemistry, one that is independent of basis ann yet capable of chemical accuracy. That. Monte Carlo methods can attain the very great precision needed is itself a remarkable achievement. More recently, new interest in such methods has arisen in two new a~as. Particle theorists, in particular K. Wilson, have drawn attention to the rich analogy between quantum field theoty and statistical mechanics and to the merits of Monte Carlo calculations for lattice gauge theories. This has become a rapidly growing sub-field. A related development is associated with lattice problems in quantum physics, particularly with models of solid state systems. The~ is much ferment in the calculation of various one-dimensional problems such as the'Hubbard model.

โœฆ Table of Contents


Front Matter....Pages i-viii
Droplets of 4 He Atoms....Pages 1-12
Maximum Overlap Jastrow Wave Function of the Lennard Jones Bose Fluid....Pages 13-18
Optimization and the Many-Fermion Problem....Pages 19-31
Droplets of 3 He Atoms....Pages 33-39
Random Walk in Fock Space....Pages 41-46
A Review of Quantum Monte Carlo Methods and Results for Coulombic Systems....Pages 47-57
Can Monte Carlo Methods Achieve Chemical Accuracy?....Pages 59-70
Chemical Physics of Molecular Systems in Condensed Phases....Pages 71-104
Study of an F Center in Molten KC1....Pages 105-116
Path Integral Monte Carlo....Pages 117-144
A Quantum Monte Carlo Method for the Heisenberg Spin System....Pages 145-155
Monte Carlo Simulation of One Dimensional Quantum Systems....Pages 157-186
Monte Carlo Calculation of the Thermodynamic Properties of Quantum Lattice Models....Pages 187-201
Numerical Simulation of Quantum Lattice Systems: Electron-Electron and Electron-Phonon Interactions in One Dimension....Pages 203-233
The Spectrum of Pure Gauge Theories....Pages 235-251
Evaluation of Hadron Masses in Quantum Chromodynamics....Pages 253-266
Some Applications of a New Stochastic Method in Lattice Theories....Pages 267-285
Back Matter....Pages 287-291

โœฆ Subjects


Optics, Optoelectronics, Plasmonics and Optical Devices


๐Ÿ“œ SIMILAR VOLUMES


Recent Advances in Quantum Monte Carlo M
โœ William A. Lester Jr. (ed.) ๐Ÿ“‚ Library ๐Ÿ“… 1997 ๐Ÿ› World Scientific ๐ŸŒ English

The quantum Monte Carlo (QMC) method is gaining interest as a complement to basis set ab initio methods in cases where high accuracy computation of atomic and molecular properties is desired. This volume focuses on recent advances in this area. QMC as used here refers to methods that directly solve

Monte Carlo Methods In Ab Initio Quantum
โœ Bl Hammond ๐Ÿ“‚ Library ๐Ÿ“… 1994 ๐Ÿ› Wspc ๐ŸŒ English

This book presents the basic theory and application of the Monte Carlo method to the electronic structure of atoms and molecules. It assumes no previous knowledge of the subject, only a knowledge of molecular quantum mechanics at the first-year graduate level. A working knowledge of traditional ab i

Recent Advances In Quantum Monte Carlo M
โœ William A Lester; Stuart M Rothstein; Shige Tanaka; Malvin H. Kalos; William A. ๐Ÿ“‚ Library ๐Ÿ“… 2002 ๐Ÿ› World Scientific Publishing Company ๐ŸŒ English

This invaluable book consists of 16 chapters written by some of the most notable researchers in the field of quantum Monte Carlo, highlighting the advances made since Lester Jr.'s 1997 monograph with the same title. It may be regarded as the proceedings of the Symposium on Advances in Quantum Monte

Advances in quantum Monte Carlo
โœ James B. Anderson, Stuart M. Rothstein ๐Ÿ“‚ Library ๐Ÿ“… 2007 ๐Ÿ› American Chemical Society :, Distributed by Oxford ๐ŸŒ English

<em>Advances in Quantum Monte Carlo</em> confronts the challenges in quantum mechanics that have become progressively more prevalent in the last five years. This book will cover the needed advances in Quantum Monte Carlo methods including improvements and a complete range of applications. <em>Advanc

Advances in Quantum Monte Carlo
โœ James B. Anderson and Stuart M. Rothstein (Eds.) ๐Ÿ“‚ Library ๐Ÿ“… 2007 ๐Ÿ› American Chemical Society ๐ŸŒ English

<br> Content: 1. Quantum Monte Carlo Calculations for Helium Dimers and Trimers - Matthew C. Wilson and James B. Anderson; 2. Energies and Properties of the Hydrogen Molecular Ion - S. A. Alexander and R. L. Coldwell; 3. Accuracy of a Random Walk Based Approach in the Determination of Equilibri

Advances in Quantum Monte Carlo
โœ Shigenori Tanaka, Stuart M. Rothstein, and William A. Lester, Jr. (Eds.) ๐Ÿ“‚ Library ๐Ÿ“… 2012 ๐Ÿ› American Chemical Society ๐ŸŒ English

<br> Content: PREFACE ; I. ACCURACY AND PRECISION OF QUANTUM MONTE CARLO CALCULATIONS ; 1. CORRELATED SAMPLING FOR ENERGY DIFFERENCES IN DIFFUSION QUANTUM MONTE CARLO ; JAMES B. ANDERSON ; 2. POPULATION CONTROL BIAS WITH APPLICATIONS TO PARALLEL DIFFUSION MONTE CARLO ; JARON T. KROGEL AND DAVID M. C