Rydberg antiblockade (RAB) allows more than one Rydberg atom to be excited in the presence of Rydberg-Rydberg interaction (RRI) and has many potential applications in quantum optics, many-body physics and quantum information. In this paper, we would review the conditions and possible applications of different types of RAB regimes under weak, intermediate and strong RRIs, respectively. Both van der Waals (vdW) and dipole-dipole (DD) interactions are considered for each interaction strength. This work displays the layout of RAB and provides a reference for further study of RAB-regime-based quantum optics and quantum information processing tasks
I examine interactions between ensembles of cold Rydberg atoms, and between Rydberg atoms and an int...
Highly excited atoms exhibit large long range dipole-dipole interaction, making them a perfect tool ...
Atoms excited to high lying g quantum states, so-called Rydberg atoms, are highly polarizable and, t...
Resonant laser excitation of multiple Rydberg atoms are prohibited, leading to Rydberg blockade, whe...
In this thesis I present several theoretical methods to explore the excitation dynamics of Ultracold...
We present a detailed analysis of our recent observation of synchronous Rabi oscillations between th...
Atoms excited into states of high principal quantum number, Rydberg atoms, have exaggerated properti...
We explore dipole-dipole interactions between cold 87Rb Rydberg atoms, their utility for quantum com...
Abstract. This article presents recent experiments where cold atoms excited to Rydberg states intera...
We investigate the interaction between two rubidium atoms in highly excited Rydberg states, and find...
Rydberg atoms being in a well defined quantum state alongside their tunable long-range interactions,...
Atoms excited to high-lying quantum states, so-called Rydberg atoms, are highly polarizable and, the...
Motivated by recent progress in the experimental manipulation of cold atoms in optical lattices, we ...
We demonstrate Rabi oscillations of small numbers of 87Rb atoms between ground and Rydberg states wi...
We study the Rydberg excitation dynamics of laser-driven atoms confined in a one-dimensional three-s...
I examine interactions between ensembles of cold Rydberg atoms, and between Rydberg atoms and an int...
Highly excited atoms exhibit large long range dipole-dipole interaction, making them a perfect tool ...
Atoms excited to high lying g quantum states, so-called Rydberg atoms, are highly polarizable and, t...
Resonant laser excitation of multiple Rydberg atoms are prohibited, leading to Rydberg blockade, whe...
In this thesis I present several theoretical methods to explore the excitation dynamics of Ultracold...
We present a detailed analysis of our recent observation of synchronous Rabi oscillations between th...
Atoms excited into states of high principal quantum number, Rydberg atoms, have exaggerated properti...
We explore dipole-dipole interactions between cold 87Rb Rydberg atoms, their utility for quantum com...
Abstract. This article presents recent experiments where cold atoms excited to Rydberg states intera...
We investigate the interaction between two rubidium atoms in highly excited Rydberg states, and find...
Rydberg atoms being in a well defined quantum state alongside their tunable long-range interactions,...
Atoms excited to high-lying quantum states, so-called Rydberg atoms, are highly polarizable and, the...
Motivated by recent progress in the experimental manipulation of cold atoms in optical lattices, we ...
We demonstrate Rabi oscillations of small numbers of 87Rb atoms between ground and Rydberg states wi...
We study the Rydberg excitation dynamics of laser-driven atoms confined in a one-dimensional three-s...
I examine interactions between ensembles of cold Rydberg atoms, and between Rydberg atoms and an int...
Highly excited atoms exhibit large long range dipole-dipole interaction, making them a perfect tool ...
Atoms excited to high lying g quantum states, so-called Rydberg atoms, are highly polarizable and, t...