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Deposition of mass-selected ions in neon matrices: [formula omitted] and [formula omitted]
M. Lorenz,
V. E. Bondybey
Chair of Physical Chemistry
Technical University of Munich
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Dive into the research topics of 'Deposition of mass-selected ions in neon matrices: [formula omitted] and [formula omitted]'. Together they form a unique fingerprint.
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Keyphrases
Neon
100%
Mass Selection
100%
Matrix Formula
100%
Ion Beam
66%
Kinetic Energy
33%
Vibrational Structure
33%
Excitation Spectrum
33%
Infrared Absorption
33%
Spin-orbit Splitting
33%
Doubly Degenerate
33%
Degenerate Ground State
33%
Low Symmetry
33%
Line Profiles
33%
Natural Isotopic Abundance
33%
Visible Absorption Spectra
33%
Totally Symmetric
33%
Laser-induced Fluorescence Spectra
33%
Physics
Ion Beam
100%
Ground State
100%
Kinetic Energy
50%
Isotopic Abundance
50%
Absorption Spectra
50%
Laser Induced Fluorescence
50%
Chemistry
Ground State
100%
Ion Beam
100%
Laser Induced Fluorescence Spectroscopy
50%
Kinetic Energy
50%
Absorption Spectra
50%