We show how strong light-mediated resonant dipole-dipole interactions between atoms can be utilized in a control and storage of light. The method is based on a high-fidelity preparation of a collective atomic excitation in a single correlated subradiant eigenmode in a lattice. We demonstrate how a simple phenomenological model captures the qualitative features of the dynamics and sharp transmission resonances that may find applications in sensin
By utilizing strong optical resonant interactions in arrays of atoms with electric dipole transition...
We generalize the theoretical modeling of collective atomic super- and subradiance to the multilevel...
Driven by the need to develop efficient atom-photon interfaces, recent efforts have proposed replaci...
We study strong, light-mediated, resonant dipole-dipole interactions in two-dimensional planar latti...
We show that two-time, second-order correlations of scattered photons from planar arrays and chains ...
A central goal within quantum optics is to realize efficient, controlled interactions between photon...
We study the cooperative optical coupling between regularly spaced atoms in a one-dimensional wavegu...
A central goal within quantum optics is to realize efficient, controlled interactions between photon...
We show how an initial localized radiative excitation in a two-dimensional array of cold atoms can b...
We show how an initial localized radiative excitation in a two-dimensional array of cold atoms can b...
We observe a density-dependent collective suppression of optical pumping between the hyperfine groun...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2021, Tutora:...
We investigate collective behaviour that appears in open, many-body systems of two- and four-level a...
We explore excitation transport within a one-dimensional chain of atoms where the atomic transition ...
By utilizing strong optical resonant interactions in arrays of atoms with electric dipole transition...
By utilizing strong optical resonant interactions in arrays of atoms with electric dipole transition...
We generalize the theoretical modeling of collective atomic super- and subradiance to the multilevel...
Driven by the need to develop efficient atom-photon interfaces, recent efforts have proposed replaci...
We study strong, light-mediated, resonant dipole-dipole interactions in two-dimensional planar latti...
We show that two-time, second-order correlations of scattered photons from planar arrays and chains ...
A central goal within quantum optics is to realize efficient, controlled interactions between photon...
We study the cooperative optical coupling between regularly spaced atoms in a one-dimensional wavegu...
A central goal within quantum optics is to realize efficient, controlled interactions between photon...
We show how an initial localized radiative excitation in a two-dimensional array of cold atoms can b...
We show how an initial localized radiative excitation in a two-dimensional array of cold atoms can b...
We observe a density-dependent collective suppression of optical pumping between the hyperfine groun...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2021, Tutora:...
We investigate collective behaviour that appears in open, many-body systems of two- and four-level a...
We explore excitation transport within a one-dimensional chain of atoms where the atomic transition ...
By utilizing strong optical resonant interactions in arrays of atoms with electric dipole transition...
By utilizing strong optical resonant interactions in arrays of atoms with electric dipole transition...
We generalize the theoretical modeling of collective atomic super- and subradiance to the multilevel...
Driven by the need to develop efficient atom-photon interfaces, recent efforts have proposed replaci...