International audienceRadio-frequency quantum engineering of spins is based on the dressing by a nonresonant electromagnetic field. Radio-frequency dressing occurs also for the motion of particles, electrons, or ultracold atoms, within a periodic spatial potential. The dressing, producing a renormalization and also a freeze of the system energy, is described by different approaches: dressed atom, magnetic resonance semiclassical treatment, and continued-fraction solution of the Schrödinger equation. A comparison between these solutions points out that the semiclassical treatment, to be denoted as the S solution, represents the most convenient tool to evaluate the tunneling renormalization of ultracold atoms
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
The dressed atom approach to resonance fluorescence is extended to include collisional effects. Thes...
"May 12, 1949."Includes bibliographical references.Army Signal Corps Contract No. W36-039-sc-32037 P...
International audienceRadio-frequency quantum engineering of spins is based on the dressing by a non...
This thesis presents experimental work to investigate the properties of ultracold rubidium atoms in ...
International audienceA Zeeman-insensitive optical clock atomic transition is engineered when nuclea...
Time-periodic forcing in the form of coherent radiation is a standard tool for the coherent manipula...
In this chapter we review the field of radio-frequency dressed atom trapping. We emphasise the role ...
The quantum dynamics of many-electron spin systems is investigated using a reduced-density-matrix de...
A very accurate method is presented for the continued-fraction expansion of the electron Green's-fun...
Ultracold atomic gases in periodic potentials are powerful platforms for exploring quantum physics i...
In experiments with ultra-cold gases, two alkali atoms, that interact with repulsive or attractive p...
We propose a scheme to measure the frequency-resolved local particle and hole spectra of any optical...
11 pages, 4 figures, 1 appendixWe analyze the role of impurities in the fractional quantum Hall effe...
Time-varying fields are widely used to extend the accessible range of trapping potentials for ultrac...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
The dressed atom approach to resonance fluorescence is extended to include collisional effects. Thes...
"May 12, 1949."Includes bibliographical references.Army Signal Corps Contract No. W36-039-sc-32037 P...
International audienceRadio-frequency quantum engineering of spins is based on the dressing by a non...
This thesis presents experimental work to investigate the properties of ultracold rubidium atoms in ...
International audienceA Zeeman-insensitive optical clock atomic transition is engineered when nuclea...
Time-periodic forcing in the form of coherent radiation is a standard tool for the coherent manipula...
In this chapter we review the field of radio-frequency dressed atom trapping. We emphasise the role ...
The quantum dynamics of many-electron spin systems is investigated using a reduced-density-matrix de...
A very accurate method is presented for the continued-fraction expansion of the electron Green's-fun...
Ultracold atomic gases in periodic potentials are powerful platforms for exploring quantum physics i...
In experiments with ultra-cold gases, two alkali atoms, that interact with repulsive or attractive p...
We propose a scheme to measure the frequency-resolved local particle and hole spectra of any optical...
11 pages, 4 figures, 1 appendixWe analyze the role of impurities in the fractional quantum Hall effe...
Time-varying fields are widely used to extend the accessible range of trapping potentials for ultrac...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
The dressed atom approach to resonance fluorescence is extended to include collisional effects. Thes...
"May 12, 1949."Includes bibliographical references.Army Signal Corps Contract No. W36-039-sc-32037 P...