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Modern Perspectives in Lattice QCD: Quantum Field Theory and High Performance Computing
  • Language: en
  • Pages: 756

Modern Perspectives in Lattice QCD: Quantum Field Theory and High Performance Computing

The aim of the book is to familiarize the new generation of PhD students and postdoctoral fellows with the principles and methods of modern lattice field theory, which aims to resolve fundamental, non-perturbative questions about QCD without uncontrolled approximations.

Natural History of Silence
  • Language: en
  • Pages: 128

Natural History of Silence

In our busy, noisy world, we may find ourselves longing for silence. But what is silence exactly? Is it the total absence of sound? Or is it the absence of the sound created by humans – the kind of deep stillness you might experience in a remote mountain landscape covered in snow, far away from the bustle of human life? When we listen closely, silence reveals a neglected reality. Neither empty nor singular, silence is instead plentiful and multiple. In this book, eco-acoustic historian Jérôme Sueur allows us to discover a vast landscape of silences which trigger the full gamut of our emotions: anxiety, awe and peace. He takes us from vistas resplendent with full and rich natural silences to the everyday silence of predators as they stalk their prey. To explore silences in animal behaviour and ecology is to discover a counterpoint to the acoustic diversity of the natural world, throwing into sharp relief the grating reverberations of the human activity which threatens it. It is to attune ourselves to a world that our human insensitivities have closed off to us, to take a moment simply to breathe and listen to the place of silence in nature.

Relationalism: A Theory of Being
  • Language: en
  • Pages: 85

Relationalism: A Theory of Being

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Sound Analysis and Synthesis with R
  • Language: en
  • Pages: 682

Sound Analysis and Synthesis with R

  • Type: Book
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  • Published: 2018-06-06
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  • Publisher: Springer

Sound is almost always around us, anywhere, at any time, reaching our ears and stimulating our brains for better or worse. Sound can be the disturbing noise of a drill, a merry little tune sung by a friend, the song of a bird in the morning or a clap of thunder at night. The science of sound, or acoustics, studies all types of sounds and therefore covers a wide range of scientific disciplines, from pure to applied acoustics. Research dealing with acoustics requires a sound to be recorded, analyzed, manipulated and, possibly, changed. This is particularly, but not exclusively, the case in bioacoustics and ecoacoustics, two life sciences disciplines that attempt to understand and to eavesdrop ...

Theory And Experiment Heading For New Physics, Procs Of The Int'l Sch Of Subnuclear Physics
  • Language: en
  • Pages: 690

Theory And Experiment Heading For New Physics, Procs Of The Int'l Sch Of Subnuclear Physics

In August/September 2000, a group of 80 physicists from 53 laboratories in 15 countries met in Erice, Italy, to participate in the 38th Course of the International School of Subnuclear Physics. This book constitutes the proceedings of that meeting. It focuses on the theoretical investigation of several basic unity issues, including: (1) the understanding of gauge theories in both their continuum and lattice versions; (2) the possible existence and relevance of large extra dimensions together with the resultant lowering of the Planck/string scale to the TeV range; (3) the origin and structure of flavour mixing in the quark and lepton (neutrino) sectors.

Functional Analysis and Optimization Methods in Hadron Physics
  • Language: en
  • Pages: 139

Functional Analysis and Optimization Methods in Hadron Physics

  • Type: Book
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  • Published: 2019-04-25
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  • Publisher: Springer

This book begins with a brief historical review of the early applications of standard dispersion relations in particle physics. It then presents the modern perspective within the Standard Model, emphasizing the relation of analyticity together with alternative tools applied to strong interactions, such as perturbative and lattice quantum chromodynamics (QCD), as well as chiral perturbation theory. The core of the book argues that, in order to improve the prediction of specific hadronic observables, it is often necessary to resort to methods of complex analysis more sophisticated than the simple Cauchy integral. Accordingly, a separate mathematical chapter is devoted to solving several functional analysis optimization problems. Their applications to physical amplitudes and form factors are discussed in the following chapters, which also demonstrate how to merge the analytic approach with statistical analysis tools. Given its scope, the book offers a valuable guide for researchers working in precision hadronic physics, as well as graduate students who are new to the field.

Effective Field Theories Of The Standard Model - Proceedings Of The Workshop
  • Language: en
  • Pages: 418

Effective Field Theories Of The Standard Model - Proceedings Of The Workshop

Contents:Classical Structures in the Electroweak Theory (J Baacke)The Anomalous Effective Action of QCD (J Bijnens)Nonlocal Effective Field Theory (H Georgi)ππ and πK Scattering in Chiral Perturbation Theory (N Kaiser)The Generalized Nambu-Jona-Lasinio Mechanism and the Standard Model (J Kuti)Restoration of Chiral Symmetry (H Leutwyler)Photo-Nucleon Processes in Chiral Perturbation Theory (U-G Meiβner)The Confinement and Localization of Quarks (J Polonyi)Effective Lagrangians and the Proton Matrix Element of the Axial Singlet Current (J Schechter et al.)Baryon Chiral Perturbation Theory (E Jenkins & A V Manohar)Light Quark Masses Beyond Leading Order (D Wyler)Top Quark Condensate (K Yamawaki)and other papers Readership: High energy physicists. keywords:

Numerical Challenges in Lattice Quantum Chromodynamics
  • Language: en
  • Pages: 197

Numerical Challenges in Lattice Quantum Chromodynamics

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 tog...

Theoretical Physics, Wavelets, Analysis, Genomics
  • Language: en
  • Pages: 650

Theoretical Physics, Wavelets, Analysis, Genomics

Over the course of a scientific career spanning more than fifty years, Alex Grossmann (1930-2019) made many important contributions to a wide range of areas including, among others, mathematics, numerical analysis, physics, genetics, and biology. His lasting influence can be seen not only in his research and numerous publications, but also through the relationships he cultivated with his collaborators and students. This edited volume features chapters written by some of these colleagues, as well as researchers whom Grossmann’s work and way of thinking has impacted in a decisive way. Reflecting the diversity of his interests and their interdisciplinary nature, these chapters explore a variety of current topics in quantum mechanics, elementary particles, and theoretical physics; wavelets and mathematical analysis; and genomics and biology. A scientific biography of Grossmann, along with a more personal biography written by his son, serve as an introduction. Also included are the introduction to his PhD thesis and an unpublished paper coauthored by him. Researchers working in any of the fields listed above will find this volume to be an insightful and informative work.

A model of sonority based on pitch intelligibility
  • Language: en
  • Pages: 236

A model of sonority based on pitch intelligibility

Sonority is a central notion in phonetics and phonology and it is essential for generalizations related to syllabic organization. However, to date there is no clear consensus on the phonetic basis of sonority, neither in perception nor in production. The widely used Sonority Sequencing Principle (SSP) represents the speech signal as a sequence of discrete units, where phonological processes are modeled as symbol manipulating rules that lack a temporal dimension and are devoid of inherent links to perceptual, motoric or cognitive processes. The current work aims to change this by outlining a novel approach for the extraction of continuous entities from acoustic space in order to model dynamic...