Quantum Field Theory (2026)

This spring, I will be delivering a series of lectures on quantum field theory as part of the Jizhi (集智) project (see this link). The lecture series will run from February 11 to May 6, consisting of two-hour sessions held every Wednesday from 19:00 to 21:00.

Syllubas

The following is a rough outline of the course. I will also incorporate some advanced topics—such as anomalies, generalized symmetries, topological terms, etc.—alongside the lectures.

  • Lecture 1: Physical Motivation and Preliminaries of Quantum Field Theory
  • Lecture 2: Foundations of Classical Field Theory
  • Lecture 3: Quantum Harmonic Oscillator and Second Quantization
  • Lecture 4: Path-Integral Formulation of Quantum Mechanics
  • Lecture 5: Spacetime Symmetries and the Lorentz Group
  • Lecture 6: Continuous Symmetries and Noether’s Theorem
  • Lecture 7: Canonical Quantization of Free Scalar Fields
  • Lecture 8: Canonical Quantization of Dirac Fields
  • Lecture 9: Electromagnetic Field and U(1) Gauge Theory
  • Lecture 10: Path-Integral Quantization of Free Fields
  • Lecture 11: Interacting Field Theory and Feynman Diagrams
  • Lecture 12: Overview of Advanced Topics

Recommended books and lecture notes

There are now many excellent books for learning quantum field theory (QFT); below is a concise list:

There are also many pdf lecture notes available online:

Videos lectures: