Computational methods in many-body physics

This course provides an introduction to numerical techniques used for solving quantum many-body problems. It covers (Quantum) Monte Carlo, Exact Diagonalization, Matrix Product States, Tensor Networks, and Non-Equilibrium Quantum Field Theory.
This course provides an introduction to numerical techniques used for solving quantum many-body problems. It covers (Quantum) Monte Carlo, Exact Diagonalization 

Categories

Numerical computation techniques
Methods and applications of analysis
Computer backup methods
Computer based methods
Computational based approaches
Bayesian computational methods
Computational methods calculations
Computational methods in organometallic catalysis
Computational methods in the fractional calculus of variations
Methods of computation
Computational methods in data science
Computational methods and data engineering
Computational methods for data analysis chambers
Computational methods for single-cell data analysis
Computational methods in earthquake engineering
Computational methods in failure analysis
Computational approach machine learning
Computer methods materials
Computational methods for martingale optimal transport problems
Computational methods for mass spectrometry proteomics pdf