Enrolment options

Venue: Chern Lecture Hall

Class Timings: Tuesday from 1:45 PM - 3:15 PM 

First Meeting: 11 Aug 2026 

Syllabus:
  • Motivation for random matrix models---nuclear spectra, large N gauge theories, statistical mechanics, random surfaces, string theory, quantum Chaos

  • Examples of matrix integrals: Orthogonal, Hermitian and Symplectic ensembles. Computations in Gaussian and non-Gaussian Hermitian.models; ‘tHooft’s planar expansion; Large N saddle point evaluation and related puzzles.

  • Dynamically triangulated random surfaces, 2D quantum gravity and non-critical string theory. Double scaled matrix integrals.

  • Matrix Quantum Mechanics--- free fermions, relation to string theory; the first example of “holography”; hint of spacetime lattice structure.

  • Level statistics; spectral form factor; thermalization; Bohigas-Giannoni-Schmit conjecture

  • Jackiw-Teitelboim gravity and matrix models; “gravity as a random Ensemble”

  • Large N phase transitions (Gross-Witten-Wadia). matrix models from gauge theory path integrals (Polyakov loops). Deconfinement phase Transition

  • Multi-matrix models; exact results; applications to solitons and D branes; target space entanglement entropy.

Course Outcome:
  • Familiarity with old and new techniques of matrix models. 
  • Ability to apply matrix models to problems of statistical mechanics and string theory.
  • Development of insight into thermalization and quantum chaos using random matrices as a paradigm.
Course Evaluation: In the form of project presentations from selected topics.

Credit Score: 2
Self enrolment (Student)