We report on a scanning microscopy technique for atom-number-resolved imaging of excited-state atoms. A tightly focused laser beam leads to local autoionization and the resulting ions are counted electronically. Scanning the beam across the cloud builds up an image of the density distribution of excited atoms, with access to the full counting statistics at each spatial sampling point and an overall detection efficiency of 21% . We apply this technique to the measurement of a spatially inhomogeneous electric field with a spatial resolution of 50 μ m and a sensitivity to electric-field gradients of 0.04 V cm −2
In this paper we report a direct observation of the oscillation between bound-state configurations i...
In the 1980s Demkov, Kondratovich, and Ostrovsky and Kondratovich and Ostrovsky proposed an experime...
This thesis describes the development of an experiment to study coherent population transfer between...
We report on a scanning microscopy technique for atom-number-resolved imaging of excited-state atoms...
We report on a scanning microscopy technique for atom-number-resolved imaging of excited-state atoms...
Abstract. We report on the realization of high resolution electron microscopy of Rydberg-excited ult...
This thesis describes the development of a new technique for measuring the spatial distribution of R...
Creating ultracold Rydberg atoms in lattices imprinted with a spatial light modulator offers the pos...
Rydberg atoms, which have a highly excited outer electron, are easily manipulated by electric fields...
Atomic coherence phenomena are usually investigated using single beam techniques without spatial res...
The Interaction Enhanced Imaging technique allows to detect the spatial distribution of strongly int...
We have observed transitions to autoionizing states in Mg using two short optical pulses. Mg atoms a...
There has recently been an initiative toward establishing atomic measurement standards for field qua...
We analyze photoionization and ion detection as a means of accurately counting ultracold atoms. We s...
In photoionization microscopy experiments, an atom is placed in static external fields, it is ionize...
In this paper we report a direct observation of the oscillation between bound-state configurations i...
In the 1980s Demkov, Kondratovich, and Ostrovsky and Kondratovich and Ostrovsky proposed an experime...
This thesis describes the development of an experiment to study coherent population transfer between...
We report on a scanning microscopy technique for atom-number-resolved imaging of excited-state atoms...
We report on a scanning microscopy technique for atom-number-resolved imaging of excited-state atoms...
Abstract. We report on the realization of high resolution electron microscopy of Rydberg-excited ult...
This thesis describes the development of a new technique for measuring the spatial distribution of R...
Creating ultracold Rydberg atoms in lattices imprinted with a spatial light modulator offers the pos...
Rydberg atoms, which have a highly excited outer electron, are easily manipulated by electric fields...
Atomic coherence phenomena are usually investigated using single beam techniques without spatial res...
The Interaction Enhanced Imaging technique allows to detect the spatial distribution of strongly int...
We have observed transitions to autoionizing states in Mg using two short optical pulses. Mg atoms a...
There has recently been an initiative toward establishing atomic measurement standards for field qua...
We analyze photoionization and ion detection as a means of accurately counting ultracold atoms. We s...
In photoionization microscopy experiments, an atom is placed in static external fields, it is ionize...
In this paper we report a direct observation of the oscillation between bound-state configurations i...
In the 1980s Demkov, Kondratovich, and Ostrovsky and Kondratovich and Ostrovsky proposed an experime...
This thesis describes the development of an experiment to study coherent population transfer between...