Juan David Vasquez Jaramillo, Ph.D
--B.Sc Electronics Engineering (Universidad Tecnologica de Perira - UTP),
--M.Sc. Electrical Engineering (Universidad Tecnologica de Pereira - UTP),
--Research Intership: Department of Electrical Engineering, Technion - Israel Institute of Technology
--Lic. Phil. (M.Res) Physics (Uppsala Universitet),
--Ph.D in Atomic, Molecular and Condensed Matter Physics (Uppsala Universitet),
--Postdoctoral Scholar: Quantum Transport and Electronic Structure Theory Unit,
Okinawa Institute for Science and Technology (OIST).
--Postdoctoral Scholar - Theoretical Solid State Physics Group, Universidad del Valle.
--Lecturer in Theoretical Physics at the institute of Physics, Universidad de Antioquia.
--Lecturer in Dynamical Systems and Control Theory, Faculty of Engineering, Universidad Tecnologica de Pereira.
--Senior Lecturer In Theoretical Physics, at the Department of Physics and Geology, Universidad de Pamplona.
--Lecturer in Applied Mathematics and Electromagnetic Theory, Universidad Tecnologica de Pereira.
--Postdoctoral Researcher at the Instituto de Fisica Interdisciplinar y de Sistemas Complejos (IFISC - Palma de Mallorca)
--Senior Lecturer, Faculty of Natural Sciences, Universidad Nacional de Colombia.


School on Nonequilibrium Statistical Mechanics and Theory of Quantum Matter
Faculty of Engineering
Universidad Tecnologica de Pereira

Day 1 - Tuesday July 21st 2026.
1. 8:00 Welcoming to all Participants at Universidad Tecnologica de Pereira (Bloque 1D, Piso 5)
2. 9:00 Plenary Talk: From Communication Complexity to Quantum Reservoir Computing
by: Ricard Ravell Rodriguez (Instituto de Ciencias Fotonicas)
3. 10:00 Introduction to The Classical Theory of Electricity and Magnetism (Part I)
4. 14:00 Introduction to the Classical Theory of Electricity and Magnetism (Part II)
5. 16:00 The Lorentz Oscillator and the Residue Theorem.
Day 2 - Wednesday July 22nd 2026.
1. 8:00 Notion of Dissipation from a Double Inclined Plane
2. 9:00 Mechanical and electrical Systems From the Viewpoint of the First Law of Thermodynamics.
3. 10:00 Green's Functions for Ordinary Differential Equations: Impulse and Step Responses
4. 14:00 Green's functions for the Poisson Equation
5. 16:00 Green's Function for the Non-Homogeneous Wave Equation
6. 18:00 Rutherford Scattering Problem From a Classical View-Point
7. 19:00 Green's Functions for the Quantum Scattering Problem.
Day 3 - Thursday July 23rd 2026.
1. 8:00 Introduction to Probability Theory
2. 9:00 Multivariable Characteristic Functions
3. 14:00 Central Limit Theorem
4. 16:00 Random Walks and Diffusion.
5. 18:00 Langevin Dynamics and Fokker Planck Equation
Day 4 - Friday July 24th 2026.
1. 8:00 Symmetry Breaking, Curie's Law and the Langevin/Brillouin Function
2. 10:00 Introduction to Solid state Physics, Band Theory and Band Structure
3. 14:00 Quantum Theory of Magnetism
4. 16:00 Quantum Theory of Superconductivity
5. 18:00 Kubo Linear Response Formalism and Retarded Green's Functions.