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Numerical Challenges in Lattice Quantum Chromodynamics: Joint Interdisciplinary Workshop of John Von Neumann Institute for Computing, Julich, and Inst

Numerical Challenges in Lattice Quantum Chromodynamics

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"Numerical Challenges in Lattice Quantum Chromodynamics" by Andreas Frommer, Thomas Lippert, Bjoern Medeke, Klaus Schilling is a mathematics book and learning resource focused on Cosmology. Best for teachers, students, and readers looking for stronger mathematical understanding.

Lattice gauge theory is a fairly young research area in Theoretical Particle Physics. It is of great promise as it offers the framework for an ab-initio treatment of the nonperturbative features of strong interactions. Ever since its adolescence the simulation of quantum chromodynamics has attracted the interest of numerical analysts and there is growing interdisciplinary engage ment between theoretical physicists and applied mathematicians to meet the grand challenges of this approach. This volume contains contributions of the interdisciplinary workshop "Nu merical Challenges in Lattice Quantum Chromo dynamics" that the Institute of Applied Computer Science (IAI) at Wuppertal University together with the Von-Neumann-Institute-for-Computing (NIC) organized in August 1999. The purpose of the workshop was to offer a platform for the exchange of key ideas between lattice QCD and numerical analysis communities. In this spirit leading experts from both fields have put emphasis to transcend the barriers between the disciplines. The meetings was focused on the following numerical bottleneck problems: A standard topic from the infancy of lattice QCD is the computation of Green's functions, the inverse of the Dirac operator. One has to solve huge sparse linear systems in the limit of small quark masses, corresponding to high condition numbers of the Dirac matrix. Closely related is the determination of flavor-singlet observables which came into focus during the last years.

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Best For: Researchers and graduate students in theoretical particle physics and computational mathematics
Focus: Numerical methods and computational challenges in lattice quantum chromodynamics simulations
Covers: Interdisciplinary approaches combining physics, applied mathematics, and computer science to address nonperturbative features of strong interactions
Why It Matters: Provides insights into ab-initio treatments of quantum chromodynamics, fostering collaboration between physicists and numerical analysts to advance simulation techniques

"Numerical Challenges in Lattice Quantum Chromodynamics" by Andreas Frommer, Thomas Lippert, Bjoern Medeke, Klaus Schilling is a mathematics book and learning resource focused on Cosmology. Best for teachers, students, and readers looking for stronger mathematical understanding.

Topic: Cosmology

Author: Andreas Frommer, Thomas Lippert, Bjoern Medeke, Klaus Schilling

Who this is for:

  • Teachers and classroom instructors
  • Students building subject mastery
  • Readers looking for practical learning support

Why this book matters: It stands out as a practical math resource that helps explain concepts, strengthen problem-solving, and support classroom or independent learning.

Lattice gauge theory is a fairly young research area in Theoretical Particle Physics. It is of great promise as it offers the framework for an ab-initio treatment of the nonperturbative features of strong interactions. Ever since its adolescence the simulation of quantum chromodynamics has attracted the interest of numerical analysts and there is growing interdisciplinary engage ment between theoretical physicists and applied mathematicians to meet the grand challenges of this approach. This volume contains contributions of the interdisciplinary workshop "Nu merical Challenges in Lattice Quantum Chromo dynamics" that the Institute of Applied Computer Science (IAI) at Wuppertal University together with the Von-Neumann-Institute-for-Computing (NIC) organized in August 1999. The purpose of the workshop was to offer a platform for the exchange of key ideas between lattice QCD and numerical analysis communities. In this spirit leading experts from both fields have put emphasis to transcend the barriers between the disciplines. The meetings was focused on the following numerical bottleneck problems: A standard topic from the infancy of lattice QCD is the computation of Green's functions, the inverse of the Dirac operator. One has to solve huge sparse linear systems in the limit of small quark masses, corresponding to high condition numbers of the Dirac matrix. Closely related is the determination of flavor-singlet observables which came into focus during the last years.

AuthorAndreas Frommer, Thomas Lippert, Bjoern Medeke, Klaus Schilling
PublisherSpringer Science & Business Media
Published2000-09-27
ISBN-139783540677321
BindingPaperback
Pages204
LanguageEnglish
SubjectsMathematics
TopicCosmology
SeriesLecture Notes in Computational Science and Engineering

Format: Paperback

Length: 204 pages

Language: English

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