We demonstrate a novel way of synthesizing spin-orbit interactions in ultracold quantum gases, based on a single-photon optical clock transition coupling two long-lived electronic states of two-electron ^173Yb atoms. By mapping the electronic states onto effective sites along a synthetic "electronic" dimension, we have engineered fermionic ladders with synthetic magnetic flux in an experimental configuration that has allowed us to achieve uniform fluxes on a lattice with minimal requirements and unprecedented tunability. We have detected the spin-orbit coupling with fiber-link-enhanced clock spectroscopy and directly measured the emergence of chiral edge currents, probing them as a function of the flux. These results open new directions for...
International audienceA new class of quantum engineered robust sensors is proposed by applying twist...
Quantum statistics and symmetrization dictate that identical fermions do not interact via s-wave col...
Synthetic ladders realized with one-dimensional alkaline-earth(-like) fermionic gases and subject to...
Engineered spin-orbit coupling (SOC) in cold-atom systems can enable the study of new synthetic mate...
Ultra-cold quantum gases subjected to light-induced synthetic gauge potentials have become an emerge...
Engineering a Hamiltonian system with tunable interactions provides opportunities to optimize perfor...
This electronic version was submitted by the student author. The certified thesis is available in th...
Quantum mechanical superexchange interactions form the basis of quantum magnetism in strongly correl...
The interplay between spin and motional degrees of freedom in interacting electron systems has been ...
Synthetic ladders realized with one-dimensional alkaline-earth(-like) fermionic gases and subject to...
We briefly review recent progress on ultracold atomic Fermi gases with different types of synthetic ...
Seminar Goethe University, Frankfurt, Germany, 18-04-2013Ultracold atomic gases in optical lattices ...
†These authors contributed equally to this work. Quantum mechanical superexchange interactions form ...
We consider the combined effects of large spin-orbit couplings and a perpendicular magnetic field in a...
Ultracold molecules have experienced increasing attention in recent years. Compared to ultracold ato...
International audienceA new class of quantum engineered robust sensors is proposed by applying twist...
Quantum statistics and symmetrization dictate that identical fermions do not interact via s-wave col...
Synthetic ladders realized with one-dimensional alkaline-earth(-like) fermionic gases and subject to...
Engineered spin-orbit coupling (SOC) in cold-atom systems can enable the study of new synthetic mate...
Ultra-cold quantum gases subjected to light-induced synthetic gauge potentials have become an emerge...
Engineering a Hamiltonian system with tunable interactions provides opportunities to optimize perfor...
This electronic version was submitted by the student author. The certified thesis is available in th...
Quantum mechanical superexchange interactions form the basis of quantum magnetism in strongly correl...
The interplay between spin and motional degrees of freedom in interacting electron systems has been ...
Synthetic ladders realized with one-dimensional alkaline-earth(-like) fermionic gases and subject to...
We briefly review recent progress on ultracold atomic Fermi gases with different types of synthetic ...
Seminar Goethe University, Frankfurt, Germany, 18-04-2013Ultracold atomic gases in optical lattices ...
†These authors contributed equally to this work. Quantum mechanical superexchange interactions form ...
We consider the combined effects of large spin-orbit couplings and a perpendicular magnetic field in a...
Ultracold molecules have experienced increasing attention in recent years. Compared to ultracold ato...
International audienceA new class of quantum engineered robust sensors is proposed by applying twist...
Quantum statistics and symmetrization dictate that identical fermions do not interact via s-wave col...
Synthetic ladders realized with one-dimensional alkaline-earth(-like) fermionic gases and subject to...