2003Cambridge University Press eBooksRequires access

Introductory muon science

謙忠 永嶺

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Abstract

Preface List of abbreviations 1. What are muons? What is muon science? 2. Muon sources 3. Muons inside condensed matter 4. The muonic atom and its formation in matter 5. Muon catalyzed fusion 6. Muon spin rotation/relaxation/resonance: basic principles 7. Muon spin rotation/relaxation/resonance: probing microscopic magnetic properties 8. Muon spin rotation/relaxation/resonance: probing induced microscopic systems in condensed matter 9. Cosmic-ray muon probes for internal structure of geological-scale materials 10. Future trends in muon science Further reading Index.

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Preface List of abbreviations 1. What are muons? What is muon science? 2. Muon sources 3. Muons inside condensed matter 4. The muonic atom and its formation in matter 5. Muon catalyzed fusion 6. Muon spin rotation/relaxation/resonance: basic principles 7. Muon spin rotation/relaxation/resonance: probing microscopic magnetic properties 8. Muon spin rotation/relaxation/resonance: probing induced microscopic systems in condensed matter 9. Cosmic-ray muon probes for internal structure of geological-scale materials 10. Future trends in muon science Further reading Index.

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Available abstract

Preface List of abbreviations 1. What are muons? What is muon science? 2. Muon sources 3. Muons inside condensed matter 4. The muonic atom and its formation in matter 5. Muon catalyzed fusion 6. Muon spin rotation/relaxation/resonance: basic principles 7. Muon spin rotation/relaxation/resonance: probing microscopic magnetic properties 8. Muon spin rotation/relaxation/resonance: probing induced microscopic systems in condensed matter 9. Cosmic-ray muon probes for internal structure of geological-scale materials 10. Future trends in muon science Further reading Index.

Key concepts: Muon spin spectroscopy, Muon, Physics, Exotic atom, Muon collider, Nuclear physics, Relaxation (psychology), Rotation (mathematics)

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