Lattice '98

Lattice '98
Author:
Publisher:
Total Pages: 1008
Release: 1999
Genre: Lattice field theory
ISBN:

Lattice Fermions and Structure of the Vacuum

Lattice Fermions and Structure of the Vacuum
Author: Valya Mitrjushkin
Publisher: Springer Science & Business Media
Total Pages: 377
Release: 2012-12-06
Genre: Science
ISBN: 940114124X

Among the key problems in modern field theory are the formulation of chiral group theories on the lattice and the quantitative understanding of the quark confinement mechanism. The two topics are closely related by the fact that the chiral nature of the fermions as well as the confinement force are largely topological in origin. Recent advances in this field are here reviewed by some of the world's experts.

Lattice Gas Dynamics

Lattice Gas Dynamics
Author: Jeffrey Yepez
Publisher:
Total Pages: 226
Release: 1995
Genre: Lattice gas
ISBN:

The theory and computation of lattice gas dynamics for viscous fluid hydrodynamics is presented. Theoretical analysis of these exactly conserved, discrete models is done using the Boltzmann approximation, a mean-field theoretical treatment. Theoretical results are then compared to numerical data arrived by exactly computed simulations of simple lattice-gas systems. The numerical simulations presented were carried out on a prototype lattice-gas machine, the CAM-8, which is a virtual finegrained paralled mesh architecture suitable for discrete modeling in arbitrary dimensions. Single speed and multi-speed lattice gases are treated. The new contribution is an integer lattice gas with many particles per momentum state. Comparisons are made between the mean-field theory and numerical experiments for shear viscosity transport coefficient.

An Introduction to Grids, Graphs, and Networks

An Introduction to Grids, Graphs, and Networks
Author: C. Pozrikidis
Publisher: Oxford University Press
Total Pages: 299
Release: 2014-02-17
Genre: Mathematics
ISBN: 0199996733

An Introduction to Grids, Graphs, and Networks aims to provide a concise introduction to graphs and networks at a level that is accessible to scientists, engineers, and students. In a practical approach, the book presents only the necessary theoretical concepts from mathematics and considers a variety of physical and conceptual configurations as prototypes or examples. The subject is timely, as the performance of networks is recognized as an important topic in the study of complex systems with applications in energy, material, and information grid transport (epitomized by the internet). The book is written from the practical perspective of an engineer with some background in numerical computation and applied mathematics, and the text is accompanied by numerous schematic illustrations throughout. In the book, Constantine Pozrikidis provides an original synthesis of concepts and terms from three distinct fields-mathematics, physics, and engineering-and a formal application of powerful conceptual apparatuses, like lattice Green's function, to areas where they have rarely been used. It is novel in that its grids, graphs, and networks are connected using concepts from partial differential equations. This original material has profound implications in the study of networks, and will serve as a resource to readers ranging from undergraduates to experienced scientists.

Lattice Theory: Foundation

Lattice Theory: Foundation
Author: George Grätzer
Publisher: Springer Science & Business Media
Total Pages: 639
Release: 2011-02-14
Genre: Mathematics
ISBN: 3034800185

This book started with Lattice Theory, First Concepts, in 1971. Then came General Lattice Theory, First Edition, in 1978, and the Second Edition twenty years later. Since the publication of the first edition in 1978, General Lattice Theory has become the authoritative introduction to lattice theory for graduate students and the standard reference for researchers. The First Edition set out to introduce and survey lattice theory. Some 12,000 papers have been published in the field since then; so Lattice Theory: Foundation focuses on introducing the field, laying the foundation for special topics and applications. Lattice Theory: Foundation, based on the previous three books, covers the fundamental concepts and results. The main topics are distributivity, congruences, constructions, modularity and semimodularity, varieties, and free products. The chapter on constructions is new, all the other chapters are revised and expanded versions from the earlier volumes. Almost 40 “diamond sections’’, many written by leading specialists in these fields, provide a brief glimpse into special topics beyond the basics. “Lattice theory has come a long way... For those who appreciate lattice theory, or who are curious about its techniques and intriguing internal problems, Professor Grätzer's lucid new book provides a most valuable guide to many recent developments. Even a cursory reading should provide those few who may still believe that lattice theory is superficial or naive, with convincing evidence of its technical depth and sophistication.” Bulletin of the American Mathematical Society “Grätzer’s book General Lattice Theory has become the lattice theorist’s bible.” Mathematical Reviews

Lattice Gauge Theories: An Introduction (Second Edition)

Lattice Gauge Theories: An Introduction (Second Edition)
Author: Heinz J Rothe
Publisher: World Scientific Publishing Company
Total Pages: 530
Release: 1997-06-09
Genre:
ISBN: 9813105046

This book introduces the reader to an area of elementary particle physics which has been the subject of intensive research in the past two decades. It provides graduate students with the basic theoretical background on quantum gauge field theories formulated on a space-time lattice, and with the computational tools for carrying out research in this field. The book is a substantially extended version of the first edition which appeared in 1992. Much effort has been invested to present the material in a transparent way, and in exemplifying subtle points in simple models. The material covered should enable the reader to follow the vast literature on the subject without too much difficulties. Hopefully the book will motivate young physicists to carry out research in this area of elementary particle physics.

Lattice

Lattice
Author:
Publisher:
Total Pages: 1012
Release: 1999
Genre: Field theory (Physics)
ISBN:

KI-98: Advances in Artificial Intelligence

KI-98: Advances in Artificial Intelligence
Author: Otthein Herzog
Publisher: Springer Science & Business Media
Total Pages: 376
Release: 1998-09-09
Genre: Computers
ISBN: 9783540650805

This book constitutes the refereed proceedings of the 22nd Annual German Conference on Artificial Intelligence, KI-98, held in Bremen, Germany, in September 1998. The 16 revised full papers presented were carefully reviewed and selected for inclusion in the proceedings. Also included are three invited papers and abstracts of two invited talks, as well as an appendix containing up-to-date descriptions of German AI projects. Thus the volume gives a unique overview of AI research in Germany.

Lattice 98

Lattice 98
Author: Thomas DeGrand
Publisher:
Total Pages: 968
Release: 1999
Genre: Lattice field theory
ISBN:

Advances in Cryptology – ASIACRYPT 2023

Advances in Cryptology – ASIACRYPT 2023
Author: Jian Guo
Publisher: Springer Nature
Total Pages: 484
Release: 2024-01-18
Genre: Computers
ISBN: 981998730X

The eight-volume set LNCS 14438 until 14445 constitutes the proceedings of the 29th International Conference on the Theory and Application of Cryptology and Information Security, ASIACRYPT 2023, held in Guangzhou, China, during December 4-8, 2023. The total of 106 full papers presented in these proceedings was carefully reviewed and selected from 375 submissions. The papers were organized in topical sections as follows: Part I: Secure Multi-party computation; threshold cryptography; . Part II: proof systems - succinctness and foundations; anonymity; Part III: quantum cryptanalysis; symmetric-key cryptanalysis; Part IV: cryptanalysis of post-quantum and public-key systems; side-channels; quantum random oracle model; Part V: functional encryption, commitments and proofs; secure messaging and broadcast; Part VI: homomorphic encryption; encryption with special functionalities; security proofs and security models; Part VII: post-quantum cryptography; Part VIII: quantum cryptography; key exchange; symmetric-key design.