Elementary Particle Physics Multiparticle Aspects
The observation of the scaling properties of the structure functions w and vw of deep inelastic electron 1 2 nucleon scattering [1]+ has been taken by many people as an indication for an approximate scale invariance of the world. It was pointed out by Wilson [2], that in many field theories it is po...
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Format: | eBook |
Language: | English |
Published: |
Vienna
Springer Vienna
1972, 1972
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Edition: | 1st ed. 1972 |
Series: | Few-Body Systems, Supplementa
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Subjects: | |
Online Access: | |
Collection: | Springer Book Archives -2004 - Collection details see MPG.ReNa |
Table of Contents:
- Reaction Theory of Composite Particles (Clusters)
- Comments on Nuclear Reaction Theory (S)
- The Three-Body Problem
- Results of Three-Nucleon Calculations (S)
- The Crossing Symmetric Bethe-Salpeter Equation (S)
- Eikonal Approximation in the 3-Body System (S)
- Functional Relativistic Cluster Theory
- Fivedimensional Theories and CP-Violation
- The KLO??++?? Puzzle (S)
- Review of the Status of K?3 Form Factors (S)
- Survey of High Energy Inelastic Models and Kinematical Constraints for Inclusive Processes
- Experimental Survey of Diffraction Dissociation Processes
- Selected Review of Single-Particle and Two-Particle Inclusive Reaction Experiments (S)
- Diffractive Dissociation
- Anomalous Ward Identities
- Symmetry Breaking and Sigma Commutators
- Low Energy Aspects of Broken Scale Invariance
- Current Topics in the Electromagnetic Interactions of Hadrons
- Exotic Applications of Light-Cone Algebra
- Quarks
- Asymptotic Aspects of Inclusive Production Processes
- First Experimental Results from The Intersecting Storage Rings
- A Two-Component Alternative to Dirac’s Equation (S)
- The SO4-Invariant Solutions of the ??4 Theory (S)
- On Time Non-Special Quantum Mechanics (S)
- The Ultralocal Model: Fields without Partners (S)
- Unitarity Corrections to Dual Resonance Models (S)
- A Statistical Method for Testing of Analyticity and its Application (S)
- On a Divergence-Free Example of Interaction Constituting a Dynamical Model of Quarks and Hadrons (S)
- Particle Physics and Eastern Philosophy (S)
- Summary — First Week
- Summary — Second Week