Constraints in the dynamics of quantum many-body systems can dramatically alter transport properties and relaxation timescales even in the absence of static disorder. Here, we report on the observation of such constrained dynamics arising from the distinct mobility of two species in the one-dimensional mass-imbalanced Fermi-Hubbard model, realized with ultracold ytterbium atoms in a state-dependent optical lattice. By displacing the trap potential and monitoring the subsequent dynamical response of the system, we identify suppressed transport and slow relaxation with a strong dependence on the mass imbalance and interspecies interaction strength, consistent with eventual thermalization for long times. Our observations demonstrate the potent...
A new millennia ushered in novel experimental capabilities to investigate engineered quantum systems...
Experimental advances have made ultracold atoms in optical lattices a favourable setting to study ou...
The dynamics of a one-dimensional two-component Fermi gas in the presence of a quasiperiodic optical...
Constraints in the dynamics of quantum many-body systems can dramatically alter transport properties...
One of the general mechanisms that give rise to the slow cooperative relaxation characteristic of cl...
The late-time dynamics of quantum many-body systems is organized in distinct dynamical universality ...
We experimentally and numerically investigate the sudden expansion of fermions in a homogeneous one-...
In a many-body localized (MBL) quantum system, the ergodic hypothesis breaks down, giving rise to a ...
Ultracold fermionic atoms in a disordered optical lattice can realize the disordered Fermi-Hubbard m...
A proposed paradigm for out-of-equilibrium quantum systems is that an analog of quantum phase transi...
We theoretically study the relaxation of high energy single particle excitations into molecules in a...
A fundamental question in many-body physics is how closed quantum systems reach equilibrium. We addr...
We consider a system of non-interacting fermions in one dimension subject to a single-particle poten...
Many-body localization (MBL), the disorder-induced localization of interacting particles, signals a ...
This thesis presents research on a variety of dynamical phenomena in strongly correlated systems. We...
A new millennia ushered in novel experimental capabilities to investigate engineered quantum systems...
Experimental advances have made ultracold atoms in optical lattices a favourable setting to study ou...
The dynamics of a one-dimensional two-component Fermi gas in the presence of a quasiperiodic optical...
Constraints in the dynamics of quantum many-body systems can dramatically alter transport properties...
One of the general mechanisms that give rise to the slow cooperative relaxation characteristic of cl...
The late-time dynamics of quantum many-body systems is organized in distinct dynamical universality ...
We experimentally and numerically investigate the sudden expansion of fermions in a homogeneous one-...
In a many-body localized (MBL) quantum system, the ergodic hypothesis breaks down, giving rise to a ...
Ultracold fermionic atoms in a disordered optical lattice can realize the disordered Fermi-Hubbard m...
A proposed paradigm for out-of-equilibrium quantum systems is that an analog of quantum phase transi...
We theoretically study the relaxation of high energy single particle excitations into molecules in a...
A fundamental question in many-body physics is how closed quantum systems reach equilibrium. We addr...
We consider a system of non-interacting fermions in one dimension subject to a single-particle poten...
Many-body localization (MBL), the disorder-induced localization of interacting particles, signals a ...
This thesis presents research on a variety of dynamical phenomena in strongly correlated systems. We...
A new millennia ushered in novel experimental capabilities to investigate engineered quantum systems...
Experimental advances have made ultracold atoms in optical lattices a favourable setting to study ou...
The dynamics of a one-dimensional two-component Fermi gas in the presence of a quasiperiodic optical...