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Quantum field theory
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Related lectures (28)
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Trans-series in Quantum Field Theory: SVZ Approach and Applications
Discusses the SVZ sum rules and their application in quantum field theory, focusing on trans-series and non-perturbative corrections.
RG flows in super-renormalizable scalar field theories
Explores RG flows in super-renormalizable scalar field theories, focusing on analytical approaches and non-perturbative phenomena.
Trans-series in Quantum Field Theory: SVZ Approach Overview
Discusses the SVZ method for calculating non-perturbative corrections in quantum field theory.
Renormalization Group in Field Theory
Explores the Renormalization Group in field theory, discussing scaling functions, critical exponents, and Gaussian fixed points.
Quantum Field Theory: Fermions and Grassmann Numbers
Explores quantum field theory, focusing on fermions and Grassmann numbers in the path integral formalism.
Statistical Field Theory
Covers the basics of statistical field theory, focusing on Ising models and the Ginsburg-Landau theory.
Quantum Field Theory in AdS: State-Operator Correspondence
Covers the study of free particle quantum mechanics in AdS and the State-Operator Correspondence in AdS.
Time-Independent Perturbation Theory: Degenerate Case
Covers the theory of time-independent perturbations in the degenerate case.
Flow Equations: Singular SPDEs and Quantum Field Theory
Covers recent research on singular SPDEs and their applications in quantum field theory.
Unitarity and Entropy: From Black Holes to Baryons
Explores the connection between unitarity and entropy, from black holes to baryons, revealing universal bounds and similarities.
Renormalization: AQFT
Covers the concept of renormalization in Algebraic Quantum Field Theory.
Quantum Field Theory I: Introduction to Relativistic Quantum Field Theory
Offers a basic introduction to Relativistic Quantum Field Theory with a focus on fundamental physics principles and the Standard Model.
Quantum Theory: Lorentz Transformation
Explores the Lorentz transformation in Quantum Theory, emphasizing Fock space representation and momentum concepts.
Neural Networks and Quantum Field Theory
Explores the connection between neural networks and quantum field theory, focusing on the correspondence between parameter and function spaces.
Quantum Field Theory: Fundamentals and Applications
Introduces Quantum Field Theory, covering paths to QFT, fields, weak interactions, and the Standard Model of particle Physics.
Quantum Field Theory II: Cross Section & Lifetime
Covers cross section, lifetime, quantum fluid, asymptotic states, discrete symmetries, and normal ordering in quantum field theory.
Quantum Theory and Hawking Radiation
Covers the development of quantum theory and Hawking radiation in the context of General Relativity.
Quantum Field Theory: Lecture 9
Covers relativistically normalized states, Lorentz invariance, and scalar field representations in quantum field theory.
Quantum Field Theory: Introduction
Introduces Quantum Field Theory as the way to reconcile Quantum Mechanics with Relativity, emphasizing the need for a local field due to the impossibility of instantaneous interactions at a distance.
Cosmological Puzzles: Dark Matter and Energy
Explores fundamental cosmological puzzles related to dark matter and energy.
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