DocumentCode
2942449
Title
Stepwise electron emission from autoionizing magnesium Stark state
Author
Warntjes, J.B.M. ; Wesdorp, C. ; Robicheaux, F. ; Noordam, L.D.
Author_Institution
FOM-AMOLF, Amsterdam, Netherlands
fYear
2000
fDate
10-15 Sept. 2000
Abstract
Summary form only given, as follows. Suppose both valence electrons of a magnesium atom are excited such that neither of the two electrons has enough energy to escape the ionic core. If they collide and exchange energy, one electron can decay to its ground state, whereas the other has gained enough energy to escape. This process is called autoionization. Normally the resulting electron emission decays exponentially in time. In a recent experiment we excited the first electron to a high stationary Rydberg Stark state. Subsequently, the second electron was excited with a laser pulse shorter than the orbital round-trip time of the first electron. In this special case the electron emission has a stepwise decay in which the step times correspond to the orbital round trip time and the step height to the probability to autoionize upon core passage. This peculiar ultra-fast emission pattern was observed using an atomic streak camera.
Keywords
Rydberg states; Stark effect; atom-photon collisions; autoionisation; excited states; magnesium; photoemission; photoionisation; Mg; atomic streak camera; autoionization; autoionizing Stark state; core passage; electron emission; energy exchange; excited electrons; ground state; high stationary Rydberg Stark state; ionic core; laser pulse; orbital round trip time; orbital round-trip time; probability; step height; step times; stepwise decay; stepwise electron emission; ultra-fast emission pattern; valence electrons; Cameras; Electron emission; Magnesium; Physics; Stationary state;
fLanguage
English
Publisher
ieee
Conference_Titel
Quantum Electronics Conference, 2000. Conference Digest. 2000 International
Conference_Location
Nice, France
Print_ISBN
0-7803-6318-3
Type
conf
DOI
10.1109/IQEC.2000.908182
Filename
908182
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