Different quantum states of atoms in optical lattices can be nondestructively monitored by off-resonant collective light scattering into a cavity. Angle resolved measurements of photon number and variance give information about atom-number fluctuations and pair correlations without single-site access. Observation at angles of diffraction minima provides information on quantum fluctuations insensitive to classical noise. For transverse probing, no photon is scattered into a cavity from a Mott insulator phase, while the photon number is proportional to the atom number for a superfluid
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...
Systems of ultracold atoms in optical potentials have taken a place at the forefront of research int...
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-...
We study off-resonant collective light scattering from ultracold atoms trapped in an optical lattice...
Cavity enhanced light scattering off an ultracold gas in an optical lattice constitutes a quantum me...
Quantum phases of atoms in optical lattices can be distinguished by light scattering. Atom number di...
Quantum phases of atoms in optical lattices can be distinguished by light scattering. Atom number di...
Cavity enhanced light scattering off an ultracold gas in an optical lattice constitutes a quantum me...
Studies of ultracold atoms in optical lattices link various disciplines, providing a playground wher...
We study the reflection of two counter-propagating modes of the light field in a ring resonator by u...
We consider light scattering from ultracold quantum gas in optical lattices into a cavity. The measu...
We consider light scattering from ultracold quantum gas in optical lattices into a cavity. The measu...
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...
Systems of ultracold atoms in optical potentials have taken a place at the forefront of research int...
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-...
We study off-resonant collective light scattering from ultracold atoms trapped in an optical lattice...
Cavity enhanced light scattering off an ultracold gas in an optical lattice constitutes a quantum me...
Quantum phases of atoms in optical lattices can be distinguished by light scattering. Atom number di...
Quantum phases of atoms in optical lattices can be distinguished by light scattering. Atom number di...
Cavity enhanced light scattering off an ultracold gas in an optical lattice constitutes a quantum me...
Studies of ultracold atoms in optical lattices link various disciplines, providing a playground wher...
We study the reflection of two counter-propagating modes of the light field in a ring resonator by u...
We consider light scattering from ultracold quantum gas in optical lattices into a cavity. The measu...
We consider light scattering from ultracold quantum gas in optical lattices into a cavity. The measu...
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...
Systems of ultracold atoms in optical potentials have taken a place at the forefront of research int...