We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ordering of a two-species fermionic atomic gas in a tightly-confined two-dimensional optical lattice. We analyze the emerging magnetic ordering of atoms in the mean-field and in random phase approximations and show how the many-body static and dynamic correlations, evaluated in the standard Feynman-Dyson perturbation series, can be detected in the scattered light signal. The staggered magnetization reveals itself in the magnetic Bragg peaks of the individual spin components. These magnetic peaks, however, can be considerably suppressed in the absence of a true long-range antiferromagnetic order. The light scattered outside the diffraction ord...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
Quantum magnetism originates from the exchange coupling between quantum-mechanical spins. We report ...
We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ...
The Hubbard model contains only the essential ingredients to describe the behavior of strongly inter...
This thesis presents a theoretical analysis of light scattered from atoms trapped in optical lattice...
Systems of ultracold atoms in optical potentials have taken a place at the forefront of research int...
We analyze how noise correlations probed by time-of-flight experiments reveal antiferromagnetic (AF)...
We analyze how noise correlations probed by time-of-flight experiments reveal antiferromagnetic (AF)...
We show that spin correlations of atoms in an optical lattice can be reconstructed by coupling the s...
We experimentally demonstrate coherent light scattering from an atomic Mott insulator in a two-dimen...
Ultracold atoms in optical lattices have great potential to contribute to a better understanding of ...
We experimentally demonstrate coherent light scattering from an atomic Mott insulator in a two-dimen...
Ultracold atoms in optical lattices have great potential to contribute to a better understanding of ...
Ultracold atoms in optical lattices have great potential to contribute to a better understanding of ...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
Quantum magnetism originates from the exchange coupling between quantum-mechanical spins. We report ...
We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ...
The Hubbard model contains only the essential ingredients to describe the behavior of strongly inter...
This thesis presents a theoretical analysis of light scattered from atoms trapped in optical lattice...
Systems of ultracold atoms in optical potentials have taken a place at the forefront of research int...
We analyze how noise correlations probed by time-of-flight experiments reveal antiferromagnetic (AF)...
We analyze how noise correlations probed by time-of-flight experiments reveal antiferromagnetic (AF)...
We show that spin correlations of atoms in an optical lattice can be reconstructed by coupling the s...
We experimentally demonstrate coherent light scattering from an atomic Mott insulator in a two-dimen...
Ultracold atoms in optical lattices have great potential to contribute to a better understanding of ...
We experimentally demonstrate coherent light scattering from an atomic Mott insulator in a two-dimen...
Ultracold atoms in optical lattices have great potential to contribute to a better understanding of ...
Ultracold atoms in optical lattices have great potential to contribute to a better understanding of ...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
Quantum magnetism originates from the exchange coupling between quantum-mechanical spins. We report ...