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Thermoactivation spectroscopy of solid Ar doped with N
2
A. N. Ponomaryov
, E. V. Savchenko
, G. B. Gumenchuk
, I. V. Khizhniy
, M. Frankowski
,
V. E. Bondybey
Chair of Physical Chemistry
Technical University of Munich
B. Verkin Institute for Low Temperature Physics and Engineering of the National Academy of Sciences of Ukraine
Abteilung Physikalische Chemie
University of California, Irvine
Research output
:
Contribution to journal
›
Article
›
peer-review
8
Scopus citations
Overview
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2
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Engineering
Low-Temperature
100%
Temperature Range
100%
Relaxation Process
50%
Progression
50%
Temperature Behavior
50%
Temperature Rise
50%
Rate of Heating
50%
Energy Electron
50%
Drastic Change
50%
Keyphrases
Thermoluminescence
100%
Thermoactivation
100%
Thermally Stimulated Exoelectron Emission
50%
High Temperature
16%
Irradiation
16%
Temperature Range
16%
Relaxation Process
16%
Temperature Behavior
16%
Temperature Rise
16%
Intensity Distribution
16%
Low-energy Electrons
16%
Luminescence Spectra
16%
Heating Rate
16%
Drastic Change
16%
Low Temperature Range
16%
Low-temperature Activation
16%
Cryogenic Solids
16%
Activation Spectroscopy
16%
Spectroscopic Techniques
16%
Molecular Progression
16%
Chemistry
Exoelectron Emission
100%
Spectroscopy
100%
Relaxation
33%
Spectroscopy Technique
33%
Luminiscence Spectrum
33%
Electron Beam
33%
Chemical Engineering
Heating Rate
100%
Cryogenics
100%
Material Science
Thermoluminescence
100%
Spectroscopy Technique
16%
Physics
Electron Beam
100%