Ultracold atomic gases in periodic potentials are powerful platforms for exploring quantum physics in regimes dominated by many-body effects as well as for developing applications that benefit from quantum mechanical effects. Further advances face a range of challenges including the realization of potentials with lattice constants smaller than optical wavelengths as well as creating schemes for effective addressing and manipulation of single sites. In this paper we propose a dressed-based scheme for creating periodic potential landscapes for ultracold alkali atoms with the capability of overcoming such difficulties. The dressed approach has the advantage of operating in a low-frequency regime where decoherence and heating effects due to spo...
This thesis presents the study of thermal alkali-metal vapours confined in a layer with a sub-micron...
National audienceUltra-cold atoms systems used as quantum simulators offer an alternative way to sim...
Time-varying fields are widely used to extend the accessible range of trapping potentials for ultrac...
Precise control over qubits encoded as internal states of ultracold atoms in arrays of potential wel...
Ultra-cold atoms systems used as quantum simulators offer an alternative way to simulate many-body s...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
This thesis presents experimental work to investigate the properties of ultracold rubidium atoms in ...
We report on the realization and characterization of optical potentials for ultracold atoms using a ...
We explore properties of atoms whose magnetic hyperfine sub-levels are coupled by an external magnet...
Ultracold neutral atoms in optical lattices are rich systems for the investigation of many-body phys...
A combination of static and oscillating magnetic fields can be used to ‘dress’ atoms with radio-freq...
The ability to understand and control the internal state of the atom is essential to cold atom schem...
International audienceUltra-cold atoms systems used as quantum simulators offer an alternative way t...
The three experiments described in this thesis investigate fundamental properties of ultracold atoms...
Ultracold atomic gases have proven to be an excellent tool for research in quantum systems. A Bose g...
This thesis presents the study of thermal alkali-metal vapours confined in a layer with a sub-micron...
National audienceUltra-cold atoms systems used as quantum simulators offer an alternative way to sim...
Time-varying fields are widely used to extend the accessible range of trapping potentials for ultrac...
Precise control over qubits encoded as internal states of ultracold atoms in arrays of potential wel...
Ultra-cold atoms systems used as quantum simulators offer an alternative way to simulate many-body s...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
This thesis presents experimental work to investigate the properties of ultracold rubidium atoms in ...
We report on the realization and characterization of optical potentials for ultracold atoms using a ...
We explore properties of atoms whose magnetic hyperfine sub-levels are coupled by an external magnet...
Ultracold neutral atoms in optical lattices are rich systems for the investigation of many-body phys...
A combination of static and oscillating magnetic fields can be used to ‘dress’ atoms with radio-freq...
The ability to understand and control the internal state of the atom is essential to cold atom schem...
International audienceUltra-cold atoms systems used as quantum simulators offer an alternative way t...
The three experiments described in this thesis investigate fundamental properties of ultracold atoms...
Ultracold atomic gases have proven to be an excellent tool for research in quantum systems. A Bose g...
This thesis presents the study of thermal alkali-metal vapours confined in a layer with a sub-micron...
National audienceUltra-cold atoms systems used as quantum simulators offer an alternative way to sim...
Time-varying fields are widely used to extend the accessible range of trapping potentials for ultrac...