内容提要 本书的部分概述了粒子物理学的标准模型,包括对希格斯玻色子的发现和对它的性质的概述,本书的第二部分总结了对中微子物理学的重要研究,并概述了对这些研究的解释。 目录 PrelaceAcknowledgementsAuthor BiographyPart I The Standard Model of Particle Physics1 Historical overview of particle physics 1.1 Introduction 1.2 Photons 1.3 Electrons 1.4 Protons 1.5 Neutrons 1.6 Neutrinos 1.7 Positrons 1.8 Muons 1.9 Pions 1.10 Antiprotons and antirteutronsReferences and suggestions for further reading2 Classificatioof subatomic particles and their interactions 2.1 Introduction 2.2 Leptons 2.3 Gauge bosons 2.4 FeynmadiagramsProblemsReferences and suggestions for further reading3 Evidence for quarks 3.1 Introduction 3.2 Coulombic scattering 3.3 Magnetic moment of the neutron 3.4 Excited states of the neutroand proton 3.5 Mesoproduction 3.6 Deelastic scatteringReferences and suggestions for further reading4 Hadronic structure and interactions 4.1 Introduction 4.2 Structure of mesons 4.3 Structure of baryons 4.4 Quarks, gluons and color 4.5 Understanding decays and reactionsProblemsReferences and suggestions for further reading5 The Higgoson 5.1 Introduction 5.2 Spontaneous symmetry breaking 5.3 The Higgs field 5.4 The search for the HiggosonReferences and suggestions for further readingPart II Neutrino oscillations6 Solar neutrinos 6.1 Introduction 6.2 Solar fusioprocessesProblemReferences and suggestions for further reading7 Radiochemical neutrino experiments 7.1 Introduction 7.2 The Homestake Mine experiment 7.3 SAGE 7.4 GALLEX/GNO 7.5 Calibratioof gallium experimentsProblemReferences and suggestions for further readin8 Properties of neutrinos 8.1 Introduction 8.2 Dirac and Majorana neutrinos 8.3 Neutrino flavors and Cabibbo mixin 8.4 Neutrino flavor mixing and the MSW effectReferences and suggestions for further reading9 Kamiokande and Super-Kamiokande 9.1 Introduction 9.2 Cherenkov radiation 9.3 Kamiokande and Super-Kamiokande 9.4 Solar neutrino experiments 9.5 Atmospheric neutrino experiments 9.6 Accelerator neutrino experiments 9.7 Supernova neutrinos 9.8 Protodecay experimentsProblemsReferences and suggestions for further reading10 Sudbury Neutrino Observatory 10.1 Introduction 10.2 Sudbury Neutrino Observatory 10.3 Analysis of SNO dataProblemReferences and suggestions for further reading11 Scintillator experiments 11.1 Introduction 11.2 Borexino 11.3 KamLANDReferences and suggestions for further reading12 Neutrino masses and their implications 12.1 Introduction 12.2 Neutrino masses 12.3 Cosmological implications of neutrino mass 12.4 Neutrino magnetic momentProblemReferences and suggestions for further reading编辑手记 作者介绍 理查德·A.邓拉普,Richard A Dunlap received a BS iPhysics from Worcester Polytechnic Institute i1974, aAM iPhysics from Dartmoutt College in1976 and a PhD iPhysics from Clark University i1981. Since receiving his PhD he haeeothe Faculty at Dalhousie University. He was appointed Faculty of Science Killa Research Professor iPhysics from 2001 to 2006 and served as Director of the Dalhousie University Institute for Research iMaterials from 2009 to 2015. He currently holds aappointment as Research Professor ithe Department of Physics and Atmospheric Science. Professor Dunlap has published more tha300 refereed research papers and his research interests have included, magnetic materials, amorphous alloys, critical phenomena, hydrogestorage, quasicrystals, superconductivity and materials for advanced batteries.Much of his work involves the applicatioof nuclear spectroscopic techniques to the investigatioof solid state properties. He is author of four previouooks;Experimental Physics: ModerMethods (Oxford 1988), The GoldeRatio and Fibonacci Numbers (World Scientific 1997), AIntroductioto the Physics of Nuclei and Particles (Brooks/Cole 2004), Sustainable Energy (Cengage, t ed2015,2nd ed2019). 序言
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