Energy bands of electrons in a square lattice potential threaded by a uniform magnetic field exhibit a fractal structure known as the Hofstadter butterfly. Here we study a Fermi gas in a 2D optical lattice within a linear cavity with a tilt along the cavity axis. The hopping along the cavity axis is only induced by resonant Raman scattering of transverse pump light into a standing-wave-cavity mode. Choosing a suitable pump geometry allows us to realize the Hofstadter-Harper model with a cavity-induced dynamical synthetic magnetic field, which appears at the onset of the superradiant phase transition. The dynamical nature of this cavity-induced synthetic magnetic field arises from the delicate interplay between collective superradiant scatte...
Recent advances in realizing artificial gauge fields on optical lattices promise experimental detect...
Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum ...
We consider a spinless ultracold Fermi gas tightly trapped along the axis of an optical resonator an...
Energy bands of electrons in a square lattice potential threaded by a uniform magnetic field exhibit...
We investigate the dynamics of neutral atoms in a 2D optical lattice which traps two distinct intern...
We study the interplay between the Hofstadter butterfly, strong interactions, and the Zeeman field w...
The ubiquitous Hofstadter butterfly describes a variety of systems characterized by incommensurable ...
<p><strong>Figure 2.</strong> Hofstadter butterfly: energy spectrum (black) as a function of magneti...
We investigate theoretically the spectrum of a graphenelike sample (honeycomb lattice) subjected to ...
This is the final version. Available from the American Physical Society via the DOI in this recordWe...
The properties of the Hofstadter butterfly, a fractal, self-similar spectrum of a two-dimensional el...
We propose and study various realizations of a Hofstadter-Hubbard model on a cylinder geometry with ...
Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum ...
Motivated by the recent progress in engineering artificial non-Abelian gauge fields for ultracold fe...
We use microscopic Bogoliubov-de Gennes formalism to explore the ground-state phase diagram of the s...
Recent advances in realizing artificial gauge fields on optical lattices promise experimental detect...
Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum ...
We consider a spinless ultracold Fermi gas tightly trapped along the axis of an optical resonator an...
Energy bands of electrons in a square lattice potential threaded by a uniform magnetic field exhibit...
We investigate the dynamics of neutral atoms in a 2D optical lattice which traps two distinct intern...
We study the interplay between the Hofstadter butterfly, strong interactions, and the Zeeman field w...
The ubiquitous Hofstadter butterfly describes a variety of systems characterized by incommensurable ...
<p><strong>Figure 2.</strong> Hofstadter butterfly: energy spectrum (black) as a function of magneti...
We investigate theoretically the spectrum of a graphenelike sample (honeycomb lattice) subjected to ...
This is the final version. Available from the American Physical Society via the DOI in this recordWe...
The properties of the Hofstadter butterfly, a fractal, self-similar spectrum of a two-dimensional el...
We propose and study various realizations of a Hofstadter-Hubbard model on a cylinder geometry with ...
Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum ...
Motivated by the recent progress in engineering artificial non-Abelian gauge fields for ultracold fe...
We use microscopic Bogoliubov-de Gennes formalism to explore the ground-state phase diagram of the s...
Recent advances in realizing artificial gauge fields on optical lattices promise experimental detect...
Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum ...
We consider a spinless ultracold Fermi gas tightly trapped along the axis of an optical resonator an...