There has been great interest in experimental studies of charged particles in artificial gauge fields. Here, we perform the first cold-atom explorations of the combination of artificial gauge fields and disorder. Using synthetic lattice techniques based on parametrically coupled atomic momentum states, we engineer zigzag chains with a tunable homogeneous flux. The breaking of time-reversal symmetry by the applied flux leads to analogs of spin-orbit coupling and spin-momentum locking, which we observe directly through the chiral dynamics of atoms initialized to single lattice sites. We additionally introduce precisely controlled disorder in the site-energy landscape, allowing us to explore the interplay of disorder and large effective magnet...
Seminar Goethe University, Frankfurt, Germany, 18-04-2013Ultracold atomic gases in optical lattices ...
The concept of geometrical frustration has led to rich insights into condensed matter physics, espec...
Disorder in a 1D quantum lattice induces Anderson localization of the eigenstates and blocks transpo...
Mobility edge, a critical energy separating localized and extended excitations, is a key concept for...
This thesis describes the construction of an experimental apparatus to study disorder physics using ...
This thesis describes the construction of an experimental apparatus to study disorder physics using ...
Engineering topological quantum order has become a major field of physics. Many advances have been m...
Thesis (Ph.D.)--University of Washington, 2018This thesis concerns the interplay of quantum mechanic...
We study many–body localization in a one dimensional optical lattice filled with bosons. The interac...
A study of long-range interactions in disordered systems yields a surprising result: Transport can i...
We investigate a simple tight-binding Hamiltonian to understand the stability of spin-polarized tran...
International audienceAnderson localization, the absence of diffusion in disordered media, draws its...
We show how lattice gauge theories can display many-body localization dynamics in the absence of dis...
Topology and disorder have a rich combined influence on quantum transport. In order to probe their i...
This thesis presents novel theoretical results on two cold atomic systems with particular emphasis o...
Seminar Goethe University, Frankfurt, Germany, 18-04-2013Ultracold atomic gases in optical lattices ...
The concept of geometrical frustration has led to rich insights into condensed matter physics, espec...
Disorder in a 1D quantum lattice induces Anderson localization of the eigenstates and blocks transpo...
Mobility edge, a critical energy separating localized and extended excitations, is a key concept for...
This thesis describes the construction of an experimental apparatus to study disorder physics using ...
This thesis describes the construction of an experimental apparatus to study disorder physics using ...
Engineering topological quantum order has become a major field of physics. Many advances have been m...
Thesis (Ph.D.)--University of Washington, 2018This thesis concerns the interplay of quantum mechanic...
We study many–body localization in a one dimensional optical lattice filled with bosons. The interac...
A study of long-range interactions in disordered systems yields a surprising result: Transport can i...
We investigate a simple tight-binding Hamiltonian to understand the stability of spin-polarized tran...
International audienceAnderson localization, the absence of diffusion in disordered media, draws its...
We show how lattice gauge theories can display many-body localization dynamics in the absence of dis...
Topology and disorder have a rich combined influence on quantum transport. In order to probe their i...
This thesis presents novel theoretical results on two cold atomic systems with particular emphasis o...
Seminar Goethe University, Frankfurt, Germany, 18-04-2013Ultracold atomic gases in optical lattices ...
The concept of geometrical frustration has led to rich insights into condensed matter physics, espec...
Disorder in a 1D quantum lattice induces Anderson localization of the eigenstates and blocks transpo...