Feshbach resonances in ultracold gases
Feshbach resonances are the essential tool to control the interaction between atoms in
ultracold quantum gases. They have found numerous experimental applications, opening up …
ultracold quantum gases. They have found numerous experimental applications, opening up …
The physics of dipolar bosonic quantum gases
This paper reviews the recent theoretical and experimental advances in the study of ultra-
cold gases made of bosonic particles interacting via the long-range, anisotropic dipole …
cold gases made of bosonic particles interacting via the long-range, anisotropic dipole …
Anderson localization of a non-interacting Bose–Einstein condensate
Anderson localization of waves in disordered media was originally predicted fifty years ago,
in the context of transport of electrons in crystals. The phenomenon is much more general …
in the context of transport of electrons in crystals. The phenomenon is much more general …
Optics and interferometry with atoms and molecules
Interference with atomic and molecular matter waves is a rich branch of atomic physics and
quantum optics. It started with atom diffraction from crystal surfaces and the separated …
quantum optics. It started with atom diffraction from crystal surfaces and the separated …
Twin matter waves for interferometry beyond the classical limit
Interferometers with atomic ensembles are an integral part of modern precision metrology.
However, these interferometers are fundamentally restricted by the shot noise limit, which …
However, these interferometers are fundamentally restricted by the shot noise limit, which …
Two-terminal transport measurements with cold atoms
In recent years, the ability of cold atom experiments to explore condensed-matter-related
questions has dramatically progressed. Transport experiments, in particular, have expanded …
questions has dramatically progressed. Transport experiments, in particular, have expanded …
Fermionic transport and out-of-equilibrium dynamics in a homogeneous Hubbard model with ultracold atoms
Transport properties are among the defining characteristics of many important phases in
condensed-matter physics. In the presence of strong correlations they are difficult to predict …
condensed-matter physics. In the presence of strong correlations they are difficult to predict …
Integrated mach–zehnder interferometer for bose–einstein condensates
Particle-wave duality enables the construction of interferometers for matter waves, which
complement optical interferometers in precision measurement devices. This requires the …
complement optical interferometers in precision measurement devices. This requires the …
Extreme Tunability of Interactions in a Bose-Einstein Condensate
We use a Feshbach resonance to tune the scattering length a of a Bose-Einstein
condensate of Li 7 in the| F= 1, m F= 1⟩ state. Using the spatial extent of the trapped …
condensate of Li 7 in the| F= 1, m F= 1⟩ state. Using the spatial extent of the trapped …
Bloch oscillations in the absence of a lattice
The interplay of strong quantum correlations and far-from-equilibrium conditions can give
rise to striking dynamical phenomena. We experimentally investigated the quantum motion …
rise to striking dynamical phenomena. We experimentally investigated the quantum motion …