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Lecture
Symmetry Breaking: Magnetic Fields in Cosmology
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Related lectures (49)
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Covers the relationship between magnetogenesis and baryogenesis in pseudoscalar inflation.
Cosmic Magnetic Fields: Generation and Backreaction
Covers the generation of primordial magnetic fields and their backreaction effects in cosmology.
Cosmological Puzzles: Dark Matter and Energy
Explores fundamental cosmological puzzles related to dark matter and energy.
Fermion Production: Implications for Gauge Fields and Inflation
Covers fermion production in gauge fields during inflation and its implications for cosmic phenomena.
Simulating the Early Universe: Techniques and Challenges
Covers numerical techniques for simulating the early universe, focusing on gauge invariance and fermions.
Inflationary Magnetogenesis: Primordial Curvature Perturbations and Magnetic Fields
Covers the relationship between primordial curvature perturbations and inflationary magnetic fields, emphasizing observational evidence and theoretical models.
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The Higgs Mechanism: Formal Aspects
Covers the formal aspects of the Higgs mechanism, explaining mass terms for scalar and gauge bosons through symmetry breaking.
Cosmic Magnetic Fields: Production and Dynamics
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Magnetogenesis: Axion Inflation and Gravitational Waves
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The Higgs Mechanism
Explores the formal aspects of the Higgs mechanism, covering mass terms, symmetry breaking, and the standard model Higgs boson.
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Explores new cosmological dynamics of the axion, explaining dark matter and baryon asymmetry.
Quantum Field Theory II: Gauge Theories
Explores Quantum Field Theory II, emphasizing Gauge Theories, including QED, fermion masses, vector bosons, and the Higgs mechanism.
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