Ultracold atoms loaded into higher Bloch bands provide an elegant setting for realizing many-body quantum states that spontaneously break time-reversal symmetry through the formation of chiral orbital order. The applicability of this strategy remains nonetheless limited due to the finite lifetime of atoms in high-energy bands. Here we introduce an alternative framework, suitable for bosonic gases, which builds on assembling square plaquettes pierced by a π flux (half a magnetic-flux quantum). This setting is shown to be formally equivalent to an interacting bosonic gas loaded into p orbitals, and we explore the consequences of the resulting chiral orbital order, both for weak and strong on-site interactions. We demonstrate the emergence of ...
Motivated by experiments on Josephson junction arrays, and cold atoms in an optical lattice in a syn...
The combination of a rotating cigar-shaped Bose-Einstein condensate with a one-dimensional optical l...
The interplay between spontaneous symmetry breaking in many-body systems, the wavelike nature of qua...
Ultracold atoms loaded into higher Bloch bands provide an elegant setting for realizing many-body qu...
The realization of optical lattices of cold atoms has opened up the possibility of engineering inter...
Motivated by experiments on Josephson junction arrays in a magnetic field and ultracold interacting ...
In recent years, topology has become increasingly prevalent in condensed matter physics. It has allo...
Chiral p-wave superfluids are fascinating topological quantum states of matter that have been found ...
In this thesis, we discuss ultracold quantum gases both in continuum and optical lattices. For the c...
The twodimensional chiral p-wave superfluid is known to be topological, with gapless Majorana states...
\ud We study quantum phases and transitions in ultra-cold quantum gases, beyond the scope of convent...
5 pages, 4 figures + References + Supplemental Material (7 pages, 4 figures). Minor modifications an...
We construct and classify chiral topological phases in driven (Floquet) systems of strongly interact...
A Majorana zero bound mode exists in the vortex core of a chiral p + ip superconductor or superfluid...
We construct and classify chiral topological phases in driven (Floquet) systems of strongly interact...
Motivated by experiments on Josephson junction arrays, and cold atoms in an optical lattice in a syn...
The combination of a rotating cigar-shaped Bose-Einstein condensate with a one-dimensional optical l...
The interplay between spontaneous symmetry breaking in many-body systems, the wavelike nature of qua...
Ultracold atoms loaded into higher Bloch bands provide an elegant setting for realizing many-body qu...
The realization of optical lattices of cold atoms has opened up the possibility of engineering inter...
Motivated by experiments on Josephson junction arrays in a magnetic field and ultracold interacting ...
In recent years, topology has become increasingly prevalent in condensed matter physics. It has allo...
Chiral p-wave superfluids are fascinating topological quantum states of matter that have been found ...
In this thesis, we discuss ultracold quantum gases both in continuum and optical lattices. For the c...
The twodimensional chiral p-wave superfluid is known to be topological, with gapless Majorana states...
\ud We study quantum phases and transitions in ultra-cold quantum gases, beyond the scope of convent...
5 pages, 4 figures + References + Supplemental Material (7 pages, 4 figures). Minor modifications an...
We construct and classify chiral topological phases in driven (Floquet) systems of strongly interact...
A Majorana zero bound mode exists in the vortex core of a chiral p + ip superconductor or superfluid...
We construct and classify chiral topological phases in driven (Floquet) systems of strongly interact...
Motivated by experiments on Josephson junction arrays, and cold atoms in an optical lattice in a syn...
The combination of a rotating cigar-shaped Bose-Einstein condensate with a one-dimensional optical l...
The interplay between spontaneous symmetry breaking in many-body systems, the wavelike nature of qua...