Summarization: In this review we discuss the works in the area of quantum simulation and many-body physics with light, from the early proposals on equilibrium models to the more recent works in driven dissipative platforms. We start by describing the founding works on Jaynes-Cummings-Hubbard model and the corresponding photon-blockade induced Mott transitions and continue by discussing the proposals to simulate effective spin models and fractional quantum Hall states in coupled resonator arrays (CRAs). We also analyse the recent efforts to study out-of-equilibrium many-body effects using driven CRAs, including the predictions for photon fermionisation and crystallisation in driven rings of CRAs as well as other dynamical and transient pheno...
In this thesis we have numerically studied the quantum phases of a fermionic onedimensional (1D) qua...
Cavity QED experiments are natural hosts for non-equilibrium phases of matter supported by photon-me...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
This book reviews progress towards quantum simulators based on photonic and hybrid light-matter syst...
from the introduction: "[...] This thesis addresses the problem of the nonequilibrium time-evolution...
30 pages, Invited Review Submitted to Comptes Rendus de l'Acad\'emie des Sciences, topical issue on ...
Light-matter interactions are an established field that is experiencing a renaissance in recent year...
We show that coupling ultracold atoms in optical lattices to quantized modes of an optical cavity le...
Strong effective photon-photon interactions mediated by atom-photon couplings have been routinely ac...
AbstractWe review recent developments regarding the quantum dynamics and many-body physics with ligh...
Summarization: We study the non-equilibrium behavior of optically driven dissipative coupled resonat...
Coupled quantum electrodynamics (QED) cavities have been recently proposed as new systems to simulat...
The experimental realization of correlated quantum phases with ultra-cold gases in optical lattices ...
More than 60 people from all over the world, including students, researchers and lecturers, gathered...
This thesis explores Feynman’s idea of quantum simulations by using ultracold quantum gases. In the...
In this thesis we have numerically studied the quantum phases of a fermionic onedimensional (1D) qua...
Cavity QED experiments are natural hosts for non-equilibrium phases of matter supported by photon-me...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
This book reviews progress towards quantum simulators based on photonic and hybrid light-matter syst...
from the introduction: "[...] This thesis addresses the problem of the nonequilibrium time-evolution...
30 pages, Invited Review Submitted to Comptes Rendus de l'Acad\'emie des Sciences, topical issue on ...
Light-matter interactions are an established field that is experiencing a renaissance in recent year...
We show that coupling ultracold atoms in optical lattices to quantized modes of an optical cavity le...
Strong effective photon-photon interactions mediated by atom-photon couplings have been routinely ac...
AbstractWe review recent developments regarding the quantum dynamics and many-body physics with ligh...
Summarization: We study the non-equilibrium behavior of optically driven dissipative coupled resonat...
Coupled quantum electrodynamics (QED) cavities have been recently proposed as new systems to simulat...
The experimental realization of correlated quantum phases with ultra-cold gases in optical lattices ...
More than 60 people from all over the world, including students, researchers and lecturers, gathered...
This thesis explores Feynman’s idea of quantum simulations by using ultracold quantum gases. In the...
In this thesis we have numerically studied the quantum phases of a fermionic onedimensional (1D) qua...
Cavity QED experiments are natural hosts for non-equilibrium phases of matter supported by photon-me...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...