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Quantum Spin Glasses, Annealing and Computation

Quantum Spin Glasses, Annealing and Computation PDF Author: Shu Tanaka
Publisher: Cambridge University Press
ISBN: 110830253X
Category : Science
Languages : en
Pages : 424

Book Description
Quantum annealing is a new-generation tool of information technology, which helps in solving combinatorial optimization problems with high precision, based on the concepts of quantum statistical physics. Detailed discussion on quantum spin glasses and its application in solving combinatorial optimization problems is required for better understanding of quantum annealing concepts. Fulfilling this requirement, the book highlights recent development in quantum spin glasses including Nishimori line, replica method and quantum annealing methods along with the essential principles. Separate chapters on simulated annealing, quantum dynamics and classical spin models are provided for enhanced learning. Important topics including adiabatic quantum computers and quenching dynamics are discussed in detail. This text will be useful for students of quantum computation, quantum information, statistical physics and computer science.

Quantum Spin Glasses, Annealing and Computation

Quantum Spin Glasses, Annealing and Computation PDF Author: Shu Tanaka
Publisher: Cambridge University Press
ISBN: 110830253X
Category : Science
Languages : en
Pages : 424

Book Description
Quantum annealing is a new-generation tool of information technology, which helps in solving combinatorial optimization problems with high precision, based on the concepts of quantum statistical physics. Detailed discussion on quantum spin glasses and its application in solving combinatorial optimization problems is required for better understanding of quantum annealing concepts. Fulfilling this requirement, the book highlights recent development in quantum spin glasses including Nishimori line, replica method and quantum annealing methods along with the essential principles. Separate chapters on simulated annealing, quantum dynamics and classical spin models are provided for enhanced learning. Important topics including adiabatic quantum computers and quenching dynamics are discussed in detail. This text will be useful for students of quantum computation, quantum information, statistical physics and computer science.

Quantum Quenching, Annealing and Computation

Quantum Quenching, Annealing and Computation PDF Author: Anjan Kumar Chandra
Publisher: Springer
ISBN: 3642114709
Category : Science
Languages : en
Pages : 320

Book Description
The process of realizing the ground state of some typical (frustrated) quantum many-body systems, starting from the ‘disordered’ or excited states, can be formally mapped to the search of solutions for computationally hard problems. The dynamics through the critical point, in between, are therefore extremely crucial. In the context of such computational optimization problems, the dynamics (of rapid quenching or slow annealing), while tuning the appropriate elds or uctuations, in particular while crossing the quantum critical point, are extremely intriguing and are being investigated these days intensively. Several successful methods and tricks are now well established. This volume gives a collection of introductory reviews on such developments written by well-known experts. It concentrates on quantum phase transitions and their dynamics as the transition or critical points are crossed. Both the quenching and annealing dynamics are extensively covered. We hope these timely reviews will inspire the young researchers to join and c- tribute to this fast-growing, intellectually challenging, as well as technologically demanding eld. We are extremely thankful to the contributors for their intensive work and pleasant cooperations. We are also very much indebted to Kausik Das for his help in compiling this book. Finally, we express our gratitude to Johannes Zittartz, Series Editor, LNP, and Christian Caron of physics editorial department of Springer for their encouragement and support.

Quantum Annealing and Related Optimization Methods

Quantum Annealing and Related Optimization Methods PDF Author: Arnab Das
Publisher: Springer Science & Business Media
ISBN: 9783540279877
Category : Science
Languages : en
Pages : 396

Book Description
physics

Random Fields and Spin Glasses

Random Fields and Spin Glasses PDF Author: Cirano De Dominicis
Publisher: Cambridge University Press
ISBN: 9780521847834
Category : Science
Languages : en
Pages : 240

Book Description
The book introduces some useful and little known techniques in statistical mechanics and field theory including multiple Legendre transforms, supersymmetry, Fourier transforms on a tree, infinitesimal permutations and Ward Takahashi Identities."--Jacket.

Lectures on Quantum Computing, Thermodynamics and Statistical Physics

Lectures on Quantum Computing, Thermodynamics and Statistical Physics PDF Author: Mikio Nakahara
Publisher: World Scientific
ISBN: 9814425192
Category : Science
Languages : en
Pages : 199

Book Description
This book is a collection of lecture notes from the Symposium on Quantum Computing, Thermodynamics, and Statistical Physics, held at Kinki University in March 2012. Quantum information theory has a deep connection with statistical physics and thermodynamics. This volume introduces some of the topics on interface among the mentioned fields. Subjects included in the lecture notes include quantum annealing method, nonequilibrium thermodynamics and spin glass theory, among others. These subjects were presented with much emphasis put in its relevance in quantum information theory. These lecture notes are prepared in a self-contained manner so that a reader with modest background may understand the subjects.

Adiabatic Quantum Computation and Quantum Annealing

Adiabatic Quantum Computation and Quantum Annealing PDF Author: Catherine C. McGeoch
Publisher: Morgan & Claypool Publishers
ISBN: 1627053360
Category : Science
Languages : en
Pages : 95

Book Description
Adiabatic quantum computation (AQC) is an alternative to the better-known gate model of quantum computation. The two models are polynomially equivalent, but otherwise quite dissimilar: one property that distinguishes AQC from the gate model is its analog nature. Quantum annealing (QA) describes a type of heuristic search algorithm that can be implemented to run in the ``native instruction set'' of an AQC platform. D-Wave Systems Inc. manufactures {quantum annealing processor chips} that exploit quantum properties to realize QA computations in hardware. The chips form the centerpiece of a novel computing platform designed to solve NP-hard optimization problems. Starting with a 16-qubit prototype announced in 2007, the company has launched and sold increasingly larger models: the 128-qubit D-Wave One system was announced in 2010 and the 512-qubit D-Wave Two system arrived on the scene in 2013. A 1,000-qubit model is expected to be available in 2014. This monograph presents an introductory overview of this unusual and rapidly developing approach to computation. We start with a survey of basic principles of quantum computation and what is known about the AQC model and the QA algorithm paradigm. Next we review the D-Wave technology stack and discuss some challenges to building and using quantum computing systems at a commercial scale. The last chapter reviews some experimental efforts to understand the properties and capabilities of these unusual platforms. The discussion throughout is aimed at an audience of computer scientists with little background in quantum computation or in physics.

Phase Transition in the Density of States of Quantum Spin Glasses

Phase Transition in the Density of States of Quantum Spin Glasses PDF Author: Dominik Schröder
Publisher:
ISBN: 9781320866729
Category :
Languages : en
Pages :

Book Description


Perspectives on Spin Glasses

Perspectives on Spin Glasses PDF Author: Pierluigi Contucci
Publisher: Cambridge University Press
ISBN: 0521763347
Category : Science
Languages : en
Pages : 219

Book Description
Presenting and developing the theory of spin glasses for mathematical physicists and probabilists working in disordered systems.

The Sherrington-Kirkpatrick Model

The Sherrington-Kirkpatrick Model PDF Author: Dmitry Panchenko
Publisher: Springer Science & Business Media
ISBN: 1461462894
Category : Mathematics
Languages : en
Pages : 164

Book Description
The celebrated Parisi solution of the Sherrington-Kirkpatrick model for spin glasses is one of the most important achievements in the field of disordered systems. Over the last three decades, through the efforts of theoretical physicists and mathematicians, the essential aspects of the Parisi solution were clarified and proved mathematically. The core ideas of the theory that emerged are the subject of this book, including the recent solution of the Parisi ultrametricity conjecture and a conceptually simple proof of the Parisi formula for the free energy. The treatment is self-contained and should be accessible to graduate students with a background in probability theory, with no prior knowledge of spin glasses. The methods involved in the analysis of the Sherrington-Kirkpatrick model also serve as a good illustration of such classical topics in probability as the Gaussian interpolation and concentration of measure, Poisson processes, and representation results for exchangeable arrays.

Theory of Simple Glasses

Theory of Simple Glasses PDF Author: Giorgio Parisi
Publisher: Cambridge University Press
ISBN: 1108126103
Category : Science
Languages : en
Pages : 341

Book Description
This pedagogical and self-contained text describes the modern mean field theory of simple structural glasses. The book begins with a thorough explanation of infinite-dimensional models in statistical physics, before reviewing the key elements of the thermodynamic theory of liquids and the dynamical properties of liquids and glasses. The central feature of the mean field theory of disordered systems, the existence of a large multiplicity of metastable states, is then introduced. The replica method is then covered, before the final chapters describe important, advanced topics such as Gardner transitions, complexity, packing spheres in large dimensions, the jamming transition, and the rheology of glass. Presenting the theory in a clear and pedagogical style, this is an excellent resource for researchers and graduate students working in condensed matter physics and statistical mechanics.