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Mechanism for two-roton Raman scattering from liquid helium
J. Woods Halley
Physics and Astronomy (Twin Cities)
Research output
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Contribution to journal
›
Article
›
peer-review
32
Scopus citations
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Keyphrases
Raman Scattering
100%
Liquid Helium
100%
Rotons
100%
Electronic Excitation
20%
Absorption Mechanism
20%
Phonons
20%
Lower Order
20%
Energy Transfer
20%
Scattering Amplitudes
20%
Intermediate State
20%
Helium Atom
20%
Pair Correlation Function
20%
Electromagnetic Field
20%
Quadrupole
20%
Infrared Absorption
20%
Qa-2
20%
Dipole Interaction
20%
Scattering Cross Section
20%
Chemistry
Helium
100%
Roton
100%
Raman Spectra
100%
Energy Transfer
20%
Electronic Excitation
20%
Helium Atom
20%
Phonons
20%
Dipole Interaction
20%
Pair Correlation Function
20%
Quadrupole
20%
Electromagnetic Fields
20%
Physics
Liquid Helium
100%
Roton
100%
Raman Spectra
100%
Energy Transfer
20%
Scattering Cross Section
20%
Electromagnetic Fields
20%
Quadrupole
20%
Scattering Amplitude
20%
Helium Atom
20%
Infrared Absorption
20%
Phonon
20%