The giant electro-optical response of Rydberg atoms manifests itself in the emergence of sidebands in the Rydberg excitation spectrum if the atom is exposed to a radio-frequency (RF) electric field. Here we report on the study of RF-dressed Rydberg atoms inside hollow-core photonic crystal fibres, a system that enables the use of low modulation voltages and offers the prospect of miniaturised vapour-based electro-optical devices. Narrow spectroscopic features caused by the RF field are observed for modulation frequencies up to 500 MHz
Radio frequencies in high-frequency (HF) and very high-frequency (VHF) bands (3–300 MHz) are challen...
Crystalline structures of highly excited Rydberg atoms can be a model for dilute metallic solids wit...
Coherent superpositions of the 49s 1/2 and 48s 1/2 Rydberg states of cold 87 Rb atoms were studied n...
The giant electro-optical response of Rydberg atoms manifests itself in the emergence of sidebands i...
The exceptionally large polarizability of highly excited Rydberg atoms-six orders of magnitude highe...
The spectroscopy of atomic gases confined in hollow-core photonic crystal fiber (HC-PCF) provides op...
This thesis presents the coherent excitation of Rydberg states from a room temperature vapor of cesi...
In this paper, we present detailed high-resolution spectroscopy of rubidium (Rb) vapor confined with...
Rydberg atoms have been used for measuring radio-frequency (RF) electric (E)-fields due to their str...
We initially discuss the theory of three-level systems using the dressed state formalism. One of the...
On one side, atom-chip experiments have demonstrated to be a versatile tool to study quantum physics...
Highly excited Rydberg atoms in a room-temperature vapor cell are promising for developing a radio-f...
In this thesis we investigate highly excited atoms, so-called Rydberg atoms, in oscillating fields w...
Optical nanofibres (ONF) are used to confine light in subwavelength dimensions. In ONFs, a large eva...
A proposal for performing quantum memory schemes with a light matter interface in Hollow Core Fibres...
Radio frequencies in high-frequency (HF) and very high-frequency (VHF) bands (3–300 MHz) are challen...
Crystalline structures of highly excited Rydberg atoms can be a model for dilute metallic solids wit...
Coherent superpositions of the 49s 1/2 and 48s 1/2 Rydberg states of cold 87 Rb atoms were studied n...
The giant electro-optical response of Rydberg atoms manifests itself in the emergence of sidebands i...
The exceptionally large polarizability of highly excited Rydberg atoms-six orders of magnitude highe...
The spectroscopy of atomic gases confined in hollow-core photonic crystal fiber (HC-PCF) provides op...
This thesis presents the coherent excitation of Rydberg states from a room temperature vapor of cesi...
In this paper, we present detailed high-resolution spectroscopy of rubidium (Rb) vapor confined with...
Rydberg atoms have been used for measuring radio-frequency (RF) electric (E)-fields due to their str...
We initially discuss the theory of three-level systems using the dressed state formalism. One of the...
On one side, atom-chip experiments have demonstrated to be a versatile tool to study quantum physics...
Highly excited Rydberg atoms in a room-temperature vapor cell are promising for developing a radio-f...
In this thesis we investigate highly excited atoms, so-called Rydberg atoms, in oscillating fields w...
Optical nanofibres (ONF) are used to confine light in subwavelength dimensions. In ONFs, a large eva...
A proposal for performing quantum memory schemes with a light matter interface in Hollow Core Fibres...
Radio frequencies in high-frequency (HF) and very high-frequency (VHF) bands (3–300 MHz) are challen...
Crystalline structures of highly excited Rydberg atoms can be a model for dilute metallic solids wit...
Coherent superpositions of the 49s 1/2 and 48s 1/2 Rydberg states of cold 87 Rb atoms were studied n...