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Radiative cooling of Al4- clusters
Y. Toker
, O. Aviv
, M. Eritt
, M. L. Rappaport
, O. Heber
, D. Schwalm
, D. Zajfman
Weizmann Institute of Science
Max Planck Institute for Nuclear Physics
Research output
:
Contribution to journal
›
Article
›
peer-review
48
Scopus citations
Overview
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Keyphrases
Laser Pulse
100%
Radiative Cooling
100%
Ion Source
50%
Electronic Transitions
50%
Temperature Effect
50%
Negatively Charged
50%
Decay Curves
50%
Storage Time
50%
Electrostatic Ion Trap
50%
Electron Emission
50%
Aluminum Clusters
50%
Short Laser Pulses
50%
Hot Ions
50%
Transition Energy
50%
Radiation Intensity
50%
Cooling Behavior
50%
Active Vibration
50%
Arrhenius
50%
Decay Law
50%
Molecular Thermometers
50%
Black Men
50%
Engineering
Arrhenius
100%
Microsecond
100%
Short Pulse Laser
100%
Radiation Intensity
100%
Energy Transition
100%
Electrostatics
100%
Ion Source
100%
Temperature Dependence
100%
Electron Emission
100%
Physics
Laser Pulse
100%
Electrostatics
33%
Ion Beams
33%
Ion Source
33%
Temperature Dependence
33%
Electron Emission
33%
Radiant Flux Density
33%
Chemistry
Laser Pulse
100%
Electronic Transition
33%
Ion Beam
33%
Electron Emission
33%
Aluminum Atom
33%