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Advanced Quantum Field Theory
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Related lectures (26)
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Renormalization Group in Field Theory
Explores the Renormalization Group in field theory, discussing scaling functions, critical exponents, and Gaussian fixed points.
Gauge Theories: Chiral Transformations and Path Integrals
Covers the gauged Wess-Zumino-Witten model and its applications in conformal field theory.
Quantum Theory: Lorentz Transformation
Explores the Lorentz transformation in Quantum Theory, emphasizing Fock space representation and momentum concepts.
Compactified Imaginary Liouville Theory: Scaling Limits and Challenges
Covers compactified imaginary Liouville theory and the scaling limits of loop models, addressing mathematical challenges and future research directions.
Quantum Field Theory: Path Integrals
Explores path integrals in quantum field theory, emphasizing the significance of Wick rotation and the classical case.
Quantum Field Theory: Fermions and Grassmann Numbers
Explores quantum field theory, focusing on fermions and Grassmann numbers in the path integral formalism.
Renormalization: AQFT
Covers the concept of renormalization in Algebraic Quantum Field Theory.
Statistical Field Theory
Covers the basics of statistical field theory, focusing on Ising models and the Ginsburg-Landau theory.
Flow Equations: Singular SPDEs and Quantum Field Theory
Covers recent research on singular SPDEs and their applications in quantum field theory.
Quantum Field Theory: Lecture 9
Covers relativistically normalized states, Lorentz invariance, and scalar field representations in quantum field theory.