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Uedu Open / Introduction to Nuclear and Particle Physics
8.701

Introduction to Nuclear and Particle Physics

Prof. Markus Klute | Fall 2020
Science & Math Physics Nuclear Physics Particle Physics Science
前往原始課程
CC BY-NC-SA 4.0
課程簡介
This is an introductory graduate-level course on the phenomenology and experimental foundations of nuclear and particle physics, including the fundamental forces and particles, as well as composites. Emphasis is on the experimental establishment of the leading models, and the theoretical tools and experimental apparatus used to establish them.
Course Information
SourceMIT 開放式課程
科系Physics
LanguageEnglish
影片數67
課程影片 (67)
1
L0.1 Introduction to Nuclear and Particle Physics: Course Overview
L0.1 Introduction to Nuclear and Particle Physics: Course Overview
2
L0.2 Introduction to Nuclear and Particle Physics: Course Organization
L0.2 Introduction to Nuclear and Particle Physics: Course Organization
3
L0.3 Introduction to Nuclear and Particle Physics: Teaching Staff
L0.3 Introduction to Nuclear and Particle Physics: Teaching Staff
4
L0.4 Introduction to Nuclear and Particle Physics: Literature
L0.4 Introduction to Nuclear and Particle Physics: Literature
5
L0.5 Introduction: Early History and People in Nuclear and Particle Physics
L0.5 Introduction: Early History and People in Nuclear and Particle Physics
6
L0.6 Introduction to Nuclear and Particle Physics: Particles
L0.6 Introduction to Nuclear and Particle Physics: Particles
7
L0.7 Introduction to Nuclear and Particle Physics: Units
L0.7 Introduction to Nuclear and Particle Physics: Units
8
L0.8 Introduction to Nuclear and Particle Physics: Relativistic Kinematics
L0.8 Introduction to Nuclear and Particle Physics: Relativistic Kinematics
9
L0.9 Introduction to Nuclear and Particle Physics: Spin
L0.9 Introduction to Nuclear and Particle Physics: Spin
10
L1.1 Fermions, Bosons, and Fields: Quantum Field and Matter
L1.1 Fermions, Bosons, and Fields: Quantum Field and Matter
11
L1.2 Fermions, Bosons, and Fields: Feynman Diagram
L1.2 Fermions, Bosons, and Fields: Feynman Diagram
12
L1.3 Fermions, Bosons, and Fields: Ranges of Forces
L1.3 Fermions, Bosons, and Fields: Ranges of Forces
13
L1.4 Fermions, Bosons, and Fields: Decays
L1.4 Fermions, Bosons, and Fields: Decays
14
L1.5 Fermions, Bosons, and Fields: Reactions
L1.5 Fermions, Bosons, and Fields: Reactions
15
L2.1 Symmetries: Introduction
L2.1 Symmetries: Introduction
16
L2.2 Symmetries: Flavor Symmetry
L2.2 Symmetries: Flavor Symmetry
17
L2.3 Symmetries: Parity
L2.3 Symmetries: Parity
18
L2.4 Symmetries: Charge Conjugation
L2.4 Symmetries: Charge Conjugation
19
L2.5 Symmetries: CP
L2.5 Symmetries: CP
20
L3.1 Feynman Calculus: Introduction
L3.1 Feynman Calculus: Introduction
21
L3.2 Feynman Calculus: Fermi's Golden Rule
L3.2 Feynman Calculus: Fermi's Golden Rule
22
L3.3 Feynman Calculus: Toy Theory
L3.3 Feynman Calculus: Toy Theory
23
L3.4 Feynman Calculus: Higher-Order Diagrams
L3.4 Feynman Calculus: Higher-Order Diagrams
24
L3.5 Feynman Calculus: Divergency
L3.5 Feynman Calculus: Divergency
25
L4.1 QED: Free Wave Equation
L4.1 QED: Free Wave Equation
26
L4.2 QED: Dirac Equation Solutions
L4.2 QED: Dirac Equation Solutions
27
L4.3 QED: Antiparticles
L4.3 QED: Antiparticles
28
L4.4 QED: Photon
L4.4 QED: Photon
29
L4.5 QED: Feynman Rules for QED
L4.5 QED: Feynman Rules for QED
30
L4.6 QED: Examples
L4.6 QED: Examples
31
L4.7 QED: Casimir's Trick
L4.7 QED: Casimir's Trick
32
L4.8 QED: Cross Sections
L4.8 QED: Cross Sections
33
L4.9 QED: Renormalization and Higher-Order QED Diagrams
L4.9 QED: Renormalization and Higher-Order QED Diagrams
34
L4.10 QED: Noether's Theorem
L4.10 QED: Noether's Theorem
35
L5.1 QCD: Hadron Production
L5.1 QCD: Hadron Production
36
L5.2 QCD: Elastic Electron-Positron Scattering
L5.2 QCD: Elastic Electron-Positron Scattering
37
L5.3 QCD: Feynman Rules in QCD
L5.3 QCD: Feynman Rules in QCD
38
L5.4 QCD: Deep Inelastic Scattering
L5.4 QCD: Deep Inelastic Scattering
39
L5.5 QCD: Asymptotic Freedom
L5.5 QCD: Asymptotic Freedom
40
L5.6 QCD: Hadron Collider
L5.6 QCD: Hadron Collider
41
L6.1 Weak Interactions: Feynman Rules
L6.1 Weak Interactions: Feynman Rules
42
L6.2 Weak Interactions: Electroweak Unification
L6.2 Weak Interactions: Electroweak Unification
43
L6.3 Weak Interactions: Pion Decay
L6.3 Weak Interactions: Pion Decay
44
L6.4 Weak Interactions: Quarks
L6.4 Weak Interactions: Quarks
45
L6.5 Weak Interactions: Neutral Current
L6.5 Weak Interactions: Neutral Current
46
L7.1 Higgs Physics: Higgs Mechanism
L7.1 Higgs Physics: Higgs Mechanism
47
L7.2 Higgs Physics: Fermion Masses
L7.2 Higgs Physics: Fermion Masses
48
L7.3 Higgs Physics: Production and Decay
L7.3 Higgs Physics: Production and Decay
49
L7.4 Higgs Physics: Current Status
L7.4 Higgs Physics: Current Status
50
L8.1 Neutrino Physics: In the Standard Model
L8.1 Neutrino Physics: In the Standard Model
51
L8.2 Neutrino Physics: Mass
L8.2 Neutrino Physics: Mass
52
L8.3 Neutrino Physics: Mixing
L8.3 Neutrino Physics: Mixing
53
L8.4 Neutrino Physics: Experimental Study
L8.4 Neutrino Physics: Experimental Study
54
L8.5 Neutrino Physics: Results of Neutrino Oscillation Experiments
L8.5 Neutrino Physics: Results of Neutrino Oscillation Experiments
55
L8.6 Neutrino Physics: Mass Scale and Nature
L8.6 Neutrino Physics: Mass Scale and Nature
56
L9.1 Nuclear Physics: Introduction
L9.1 Nuclear Physics: Introduction
57
L9.2 Nuclear Physics: Binding Energies
L9.2 Nuclear Physics: Binding Energies
58
L9.3 Nuclear Physics: Stability
L9.3 Nuclear Physics: Stability
59
L9.4 Nuclear Physics: Nuclear Force
L9.4 Nuclear Physics: Nuclear Force
60
L9.5 Nuclear Physics: Shell Model
L9.5 Nuclear Physics: Shell Model
61
L9.6 Nuclear Physics: Gamma Decay
L9.6 Nuclear Physics: Gamma Decay
62
L9.7 Nuclear Physics: Fission
L9.7 Nuclear Physics: Fission
63
L9.8 Nuclear Physics: Fusion
L9.8 Nuclear Physics: Fusion
64
L10.1 Instrumentation: Particle Interaction with Matter
L10.1 Instrumentation: Particle Interaction with Matter
65
L10.2 Instrumentation: Tracking Detectors
L10.2 Instrumentation: Tracking Detectors
66
L10.3 Instrumentation: Calorimetry
L10.3 Instrumentation: Calorimetry
67
L10.4 Instrumentation: Accelerators
L10.4 Instrumentation: Accelerators