We discuss the properties of Rydberg atoms in a magnetic Ioffe-Pritchard trap being commonly used in ultracold atomic physics experiments. The Hamiltonian is derived and it is demonstrated how tight traps alter the coupling of the atom to the magnetic field. We solve the underlying Schroedinger equation of the system within a given n-manifold and show that for a sufficiently large Ioffe field strength the 2n^2-dimensional system of coupled Schroedinger equations decays into several decoupled multicomponent equations governing the center of mass motion. An analysis of the fully quantized center of mass and electronic states is undertaken. In particular, we discuss the situation of tight center of mass confinement outlining the procedure to g...
We propose to apply atom-chip techniques to the trapping of a single atom in a circular Rydberg stat...
We Rydberg dress a magneto-optical trap of strontium atoms, mixing Rydberg character into atoms as t...
Rydberg-dressed ground state atoms are atoms with an electron off-resonantly excited to a very high ...
Subject of this thesis is the theoretical study of the quantum properties of ultracold Rydberg atoms...
Interaction-induced stabilization of ultracold Rydberg atoms in a Ioffe-Pritchard trap — Subject of ...
Magnetic trapping is a well-established technique for ground state atoms. We seek to extend this con...
Collisions involving Rydberg atoms reveal detailed information on the state of a background medium a...
Cold Rydberg atoms and ultracold plasmas have been studied in the strong-magnetization regime. In th...
Recent achievements in ultra-cold experiments have made quantum simulation of interacting many-body ...
Subject of this thesis is the investigation of the quantum dynamics of ultracold atoms in the presen...
We demonstrate that through localised Rydberg excitation in a three-dimensional cold atom cloud atom...
We characterize the two-photon excitation of an ultracold gas of Rubidium atoms to Rydberg states an...
Recent developments in the study of ultracold Rydberg gases demand an advanced level of experimental...
Ultracold atomic gases excited to strongly interacting Rydberg states are a promising system for qua...
Interacting ultracold atomic quantum gases provide an ideal test bed to study strongly correlated qu...
We propose to apply atom-chip techniques to the trapping of a single atom in a circular Rydberg stat...
We Rydberg dress a magneto-optical trap of strontium atoms, mixing Rydberg character into atoms as t...
Rydberg-dressed ground state atoms are atoms with an electron off-resonantly excited to a very high ...
Subject of this thesis is the theoretical study of the quantum properties of ultracold Rydberg atoms...
Interaction-induced stabilization of ultracold Rydberg atoms in a Ioffe-Pritchard trap — Subject of ...
Magnetic trapping is a well-established technique for ground state atoms. We seek to extend this con...
Collisions involving Rydberg atoms reveal detailed information on the state of a background medium a...
Cold Rydberg atoms and ultracold plasmas have been studied in the strong-magnetization regime. In th...
Recent achievements in ultra-cold experiments have made quantum simulation of interacting many-body ...
Subject of this thesis is the investigation of the quantum dynamics of ultracold atoms in the presen...
We demonstrate that through localised Rydberg excitation in a three-dimensional cold atom cloud atom...
We characterize the two-photon excitation of an ultracold gas of Rubidium atoms to Rydberg states an...
Recent developments in the study of ultracold Rydberg gases demand an advanced level of experimental...
Ultracold atomic gases excited to strongly interacting Rydberg states are a promising system for qua...
Interacting ultracold atomic quantum gases provide an ideal test bed to study strongly correlated qu...
We propose to apply atom-chip techniques to the trapping of a single atom in a circular Rydberg stat...
We Rydberg dress a magneto-optical trap of strontium atoms, mixing Rydberg character into atoms as t...
Rydberg-dressed ground state atoms are atoms with an electron off-resonantly excited to a very high ...