Ab Initio Quantum Chemistry Approaches to Nonequilibrium Interactions in Molecules
Institute for Pure & Applied Mathematics (IPAM) via YouTube
Overview
Syllabus
A theory approach to predicting and controlling quantum chemical systems
Correlated photon-molecule interactions: A quantum chemistry approach
Molecular strong coupling with ab initio QED
Quasiparticle Description of Non-Perturbative Interactions: Photonic Quasiparticles
Ground and excited-state energies of the mixed "photon- quantum matter" system
Modification of H, intermolecular interactions: perturbation theory goes a long way!
Intermolecular interaction length scales inside cavities - condensed phases
New intermolecular interaction length scales inside cavities - polaritonic chemistry
Polaritonics in the presence of cavity loss: Phenomenological approach
Master equations for Markovian dynamics
Master equation approaches to open quantum system dynamics: Simple example J-C model
Correlated light-matter interactions: polaritons, probes, and emergent states of matter
Dispersions of monolayer perovskites and hBN are remarkably similar
Controlling magnon-polaritons in cuprate parent compounds via an IR-active phonon
Cavity control, nonequilibrium dynamics and quantum materials
Vibrational control and nonequilibrium dynamics
Taught by
Institute for Pure & Applied Mathematics (IPAM)