Atomic coherence phenomena are usually investigated using single beam techniques without spatial resolution. Here we demonstrate state-selective imaging of cold 85Rb atoms in a three-level ladder system, where the atomic refractive index is sensitive to the quantum coherence state of the atoms. We use a phase-sensitive diffraction contrast imaging (DCI) technique which depends on the complex refractive index of the atom cloud. A semiclassical model allows us to analytically calculate the detuning-dependent refractive index of the system. The predicted Autler-Townes splitting and our experimental measurements are in excellent agreement. DCI provided a quantitative image of the distribution of the excited-state fraction, and compared with on-...
This thesis describes the development of a new technique for measuring the spatial distribution of R...
We report on a scanning microscopy technique for atom-number-resolved imaging of excited-state atoms...
Trapped ultracold gases are highly controllable experimental systems with unique quantum properties,...
Atomic coherence phenomena are usually investigated using single beam techniques without spatial res...
We have investigated state-selective diffraction contrast imaging (DCI) of cold 85Rb atoms in the fi...
Extent: 5p.We demonstrate simultaneous phase and amplitude imaging of cold atoms using an intrinsica...
We consider the inverse problem of in-line holography, applied to minimally destructive imaging of c...
We report on a scanning microscopy technique for atom-number-resolved imaging of excited-state atoms...
Cold atoms are a quantum system well-isolated from the environment. Since the 80s, they have been us...
The ability to manipulate cold atoms has been constantly improved over the past three decades in an ...
In this project, I investigated a new imaging technique for cold and ultra-cold atoms based on the f...
doi:10.1088/1367-2630/13/11/115012 Abstract. Quantum degenerate Fermi gases and Bose–Einstein conden...
© 2011 Dr. Sebastian Dylan SalibaSaliba, S. D., Junker, M., Turner, L. D., & Scholten, R. E. (2009)....
Quantum degenerate Fermi gases and Bose-Einstein condensates give access to a vast new class of quan...
The advances in laser cooling and trapping techniques allow samples of ultra-cold atoms to be create...
This thesis describes the development of a new technique for measuring the spatial distribution of R...
We report on a scanning microscopy technique for atom-number-resolved imaging of excited-state atoms...
Trapped ultracold gases are highly controllable experimental systems with unique quantum properties,...
Atomic coherence phenomena are usually investigated using single beam techniques without spatial res...
We have investigated state-selective diffraction contrast imaging (DCI) of cold 85Rb atoms in the fi...
Extent: 5p.We demonstrate simultaneous phase and amplitude imaging of cold atoms using an intrinsica...
We consider the inverse problem of in-line holography, applied to minimally destructive imaging of c...
We report on a scanning microscopy technique for atom-number-resolved imaging of excited-state atoms...
Cold atoms are a quantum system well-isolated from the environment. Since the 80s, they have been us...
The ability to manipulate cold atoms has been constantly improved over the past three decades in an ...
In this project, I investigated a new imaging technique for cold and ultra-cold atoms based on the f...
doi:10.1088/1367-2630/13/11/115012 Abstract. Quantum degenerate Fermi gases and Bose–Einstein conden...
© 2011 Dr. Sebastian Dylan SalibaSaliba, S. D., Junker, M., Turner, L. D., & Scholten, R. E. (2009)....
Quantum degenerate Fermi gases and Bose-Einstein condensates give access to a vast new class of quan...
The advances in laser cooling and trapping techniques allow samples of ultra-cold atoms to be create...
This thesis describes the development of a new technique for measuring the spatial distribution of R...
We report on a scanning microscopy technique for atom-number-resolved imaging of excited-state atoms...
Trapped ultracold gases are highly controllable experimental systems with unique quantum properties,...