We study off-resonant collective light scattering from ultracold atoms trapped in an optical lattice. Scattering from different atomic quantum states creates different quantum states of the scattered light, which can be distinguished by measurements of the spatial intensity distribution, quadrature variances, photon statistics, or spectral measurements. In particular, angle-resolved intensity measurements reflect global statistics of atoms (total number of radiating atoms) as well as local statistical quantities (single-site statistics even without an optical access to a single site) and pair correlations between different sites. As a striking example we consider scattering from transversally illuminated atoms into an optical cavity mode. F...
Trapping ultracold atoms in optical lattices enabled the study of strongly correlated phenomena in a...
We show that spin correlations of atoms in an optical lattice can be reconstructed by coupling the s...
In this work, inelastic light-scattering (Bragg spectroscopy) is used to study strongly correlated p...
We study off-resonant collective light scattering from ultracold atoms trapped in an optical lattice...
Different quantum states of atoms in optical lattices can be nondestructively monitored through off-...
Different quantum states of atoms in optical lattices can be nondestructively monitored by off-reson...
We study the reflection of two counter-propagating modes of the light field in a ring resonator by u...
Studies of ultracold atoms in optical lattices link various disciplines, providing a playground wher...
Studies of ultracold atoms in optical lattices link various disciplines, providing a playground wher...
Systems of ultracold atoms in optical potentials have taken a place at the forefront of research int...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
Cavity enhanced light scattering off an ultracold gas in an optical lattice constitutes a quantum me...
Cavity enhanced light scattering off an ultracold gas in an optical lattice constitutes a quantum me...
Trapping ultracold atoms in optical lattices enabled the study of strongly correlated phenomena in a...
We show that spin correlations of atoms in an optical lattice can be reconstructed by coupling the s...
In this work, inelastic light-scattering (Bragg spectroscopy) is used to study strongly correlated p...
We study off-resonant collective light scattering from ultracold atoms trapped in an optical lattice...
Different quantum states of atoms in optical lattices can be nondestructively monitored through off-...
Different quantum states of atoms in optical lattices can be nondestructively monitored by off-reson...
We study the reflection of two counter-propagating modes of the light field in a ring resonator by u...
Studies of ultracold atoms in optical lattices link various disciplines, providing a playground wher...
Studies of ultracold atoms in optical lattices link various disciplines, providing a playground wher...
Systems of ultracold atoms in optical potentials have taken a place at the forefront of research int...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
Cavity enhanced light scattering off an ultracold gas in an optical lattice constitutes a quantum me...
Cavity enhanced light scattering off an ultracold gas in an optical lattice constitutes a quantum me...
Trapping ultracold atoms in optical lattices enabled the study of strongly correlated phenomena in a...
We show that spin correlations of atoms in an optical lattice can be reconstructed by coupling the s...
In this work, inelastic light-scattering (Bragg spectroscopy) is used to study strongly correlated p...