Interacting cold-atomic gases in optical lattices offer an experimental approach to outstanding problems of many body physics. One important example is the interplay of interaction and topology which promises to generate a variety of exotic phases such as the fractionalized Chern insulator or the topological Mott insulator. Both theoretically understanding these states of matter and finding suitable systems that host them have proven to be challenging problems. Here we propose a cold-atom setup where Hubbard on-site interactions give rise to spin liquid-like phases: weak and strong topological Mott insulators. They represent the celebrated paradigm of an interacting and topological quantum state with fractionalized spinon excitations that i...
The present thesis studies a variety of cold atomic systems in artificial gauge fields. In the first...
We lay out an experiment to realize time-reversal invariant topological insulators in alkali atomic ...
\ud We study quantum phases and transitions in ultra-cold quantum gases, beyond the scope of convent...
Interacting cold-atomic gases in optical lattices offer an experimental approach to outstanding prob...
Topological matter is a popular topic in both condensed matter and cold-atom research. In the past d...
We propose a realistic scheme to quantum simulate the so-far experimentally unobserved topological M...
The recent discovery of topological insulators has led to a tremendous interest in the exploration o...
Topological insulators are a broad class of unconven-tional materials that are insulating in the int...
For a long time, quantum states of matter have been successfully characterized by the Ginzburg-Land...
25 pags., 13 figs. -- Open Access funded by Creative Commons Atribution Licence 4.0Understanding th...
A fundamental open problem in condensed-matter physics is how the dichotomy between conventional and...
In recent years, topology has become increasingly prevalent in condensed matter physics. It has allo...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
The interplay between many-body interactions and the kinetic energy gives rise to rich phase diagram...
© 2012 American Physical Society. A.D. thanks the F.R.S.-FNRS Belgium for financial support and N. G...
The present thesis studies a variety of cold atomic systems in artificial gauge fields. In the first...
We lay out an experiment to realize time-reversal invariant topological insulators in alkali atomic ...
\ud We study quantum phases and transitions in ultra-cold quantum gases, beyond the scope of convent...
Interacting cold-atomic gases in optical lattices offer an experimental approach to outstanding prob...
Topological matter is a popular topic in both condensed matter and cold-atom research. In the past d...
We propose a realistic scheme to quantum simulate the so-far experimentally unobserved topological M...
The recent discovery of topological insulators has led to a tremendous interest in the exploration o...
Topological insulators are a broad class of unconven-tional materials that are insulating in the int...
For a long time, quantum states of matter have been successfully characterized by the Ginzburg-Land...
25 pags., 13 figs. -- Open Access funded by Creative Commons Atribution Licence 4.0Understanding th...
A fundamental open problem in condensed-matter physics is how the dichotomy between conventional and...
In recent years, topology has become increasingly prevalent in condensed matter physics. It has allo...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
The interplay between many-body interactions and the kinetic energy gives rise to rich phase diagram...
© 2012 American Physical Society. A.D. thanks the F.R.S.-FNRS Belgium for financial support and N. G...
The present thesis studies a variety of cold atomic systems in artificial gauge fields. In the first...
We lay out an experiment to realize time-reversal invariant topological insulators in alkali atomic ...
\ud We study quantum phases and transitions in ultra-cold quantum gases, beyond the scope of convent...