We propose to use adiabatic rapid passage with a chirped laser pulse in the strong dipole blockade regime to deterministically excite only one Rydberg atom from randomly loaded optical dipole traps or optical lattices. The chirped laser excitation is shown to be insensitive to the random number N of the atoms in the traps. Our method overcomes the problem of the √N dependence of the collective Rabi frequency, which was the main obstacle for deterministic single-atom excitation in the ensembles with unknown N, and can be applied for single-atom loading of dipole traps and optical lattices
Abstract Entangled states are crucial for modern quantum enabled technology which makes their creati...
Neutral atoms trapped and manipulated by laser light provide experimentally well accessible quantum ...
We describe a technique for manipulating quantum information stored in collective states of mesoscop...
Rydberg atoms have experimentally interestingproperties such as strong long-range Van der Waals inte...
Atoms excited into states of high principal quantum number, Rydberg atoms, have exaggerated properti...
We describe a method for controlling many-body states in extended ensembles of Rydberg atoms, formin...
Highly excited atoms exhibit large long range dipole-dipole interaction, making them a perfect tool ...
We present a fast and quasideterministic protocol for the production of single ions and electrons fr...
We study the Rydberg excitation dynamics of laser-driven atoms confined in a one-dimensional three-s...
Atoms in high-lying Rydberg states strongly interact with each other via the dipole-dipole or van de...
We present schemes for geometric phase compensation in an adiabatic passage which can be used for th...
Creating ultracold Rydberg atoms in lattices imprinted with a spatial light modulator offers the pos...
In this thesis, we measure the coherent dynamics and the pair correlations of Rydberg excitations in...
The work presented in this dissertation concerns dynamics of Rydberg atom lattices in the presence o...
When two quantum systems interact strongly with each other, their simultaneous excitation by the sam...
Abstract Entangled states are crucial for modern quantum enabled technology which makes their creati...
Neutral atoms trapped and manipulated by laser light provide experimentally well accessible quantum ...
We describe a technique for manipulating quantum information stored in collective states of mesoscop...
Rydberg atoms have experimentally interestingproperties such as strong long-range Van der Waals inte...
Atoms excited into states of high principal quantum number, Rydberg atoms, have exaggerated properti...
We describe a method for controlling many-body states in extended ensembles of Rydberg atoms, formin...
Highly excited atoms exhibit large long range dipole-dipole interaction, making them a perfect tool ...
We present a fast and quasideterministic protocol for the production of single ions and electrons fr...
We study the Rydberg excitation dynamics of laser-driven atoms confined in a one-dimensional three-s...
Atoms in high-lying Rydberg states strongly interact with each other via the dipole-dipole or van de...
We present schemes for geometric phase compensation in an adiabatic passage which can be used for th...
Creating ultracold Rydberg atoms in lattices imprinted with a spatial light modulator offers the pos...
In this thesis, we measure the coherent dynamics and the pair correlations of Rydberg excitations in...
The work presented in this dissertation concerns dynamics of Rydberg atom lattices in the presence o...
When two quantum systems interact strongly with each other, their simultaneous excitation by the sam...
Abstract Entangled states are crucial for modern quantum enabled technology which makes their creati...
Neutral atoms trapped and manipulated by laser light provide experimentally well accessible quantum ...
We describe a technique for manipulating quantum information stored in collective states of mesoscop...