Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Quizes
Exercises
Publications
Startups
Units
Show all results for
Home
Lecture
Quantum Field Theory Basics
Graph Chatbot
Related lectures (30)
Path Integrals: Quantum Fluids
Explores Path Integrals for quantum fluids, emphasizing superfluid transitions, permutation distributions, and the fixed-node method.
Overview of Particle Physics and Rutherford Scattering
Covers the constituents of matter, fundamental forces, the Standard Model, natural units, and particle interaction experiments.
The Higgs Mechanism: Unveiling Mass Generation
Explores the Higgs mechanism, solving the issue of massless gauge bosons and predicting masses of gauge bosons.
Statistical Thermodynamics: Partition Functions and Quantum Statistics
Introduces partition functions, quantum statistics, and the Einstein model for molecular behavior.
Quantum Mechanics: Second Quantization Part 3
Explores second quantization in quantum mechanics, emphasizing mathematical formalism and applications in quantizing particles and fields.
Computational Quantum Physics
Covers the ground-state quantum Monte Carlo method and its statistical interpretation.
Quantum Optics: Harmonic Oscillator
Covers the enhanced sensitivity of the LIGO gravitational wave detector using squeezed states of light.
Permutation Symmetry: Bosons and Fermions
Explores the symmetry of permutations in bosons and fermions based on spin values.
Higgs boson; Dark matter
Explores the properties of the Higgs boson and the concept of dark matter, including detection strategies and challenges.
Quantum Statistics and Interference Experiments
Explores quantum statistics, wave-particle duality, anyons, and interference experiments in quantum mechanics.
Electroweak Unification and the W and Z Bosons
Explores the energy frontier for discoveries of known elementary particles, focusing on bosons and fermions, including the properties and decays of the W and Z bosons.
Normal Ordered Product And Wick Theorem
Covers normal ordered product and Wick's theorem in quantum field theory.
Systems of Multiple Particles and Hartree-Fock Method
Explores systems of multiple particles and the Hartree-Fock method in quantum mechanics.
Identical Particles: Fermions
Explores quantum physics concepts related to identical fermions and bosons.
Quantum Field Theory II: Gauge Theories
Explores Quantum Field Theory II, emphasizing Gauge Theories, including QED, fermion masses, vector bosons, and the Higgs mechanism.
Gauge Theories And Modern Particle Physics
Covers gauge theories, modern particle physics, the standard model, and field content.
Jarzynski Equation and Quantum Circuits
Explores the Jarzynski equation and the quantization of electrical circuits in quantum harmonic oscillators.
Introduction to Symmetries
Covers perturbation theory, bosons, fermions, and quantum information in quantum systems.
The Higgs Mechanism: Formal Aspects
Covers the formal aspects of the Higgs mechanism, explaining mass terms for scalar and gauge bosons through symmetry breaking.
Hubbard Models: Density Matrix Formalism
Covers the Hubbard models and density matrix formalism in quantum mechanics.
Previous
Page 1 of 2
Next