1. Raman spectroscopy
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1.1.1 Physical principles
The Raman effect results from the inelastic scattering of a light beam by a medium (gas, liquid or solid). The energy difference between the incident photon of wavelength λ
i
and the scattered photon of wavelength λ
d
is exactly equal to the vibrational (or rotational) energy of the scattering molecule. Under certain conditions, this energy exchange provides access to the different vibrational...
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Raman spectroscopy
Bibliography
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(1) - RAMAN (C.V.), KRISHNAN (K.S.) -
A new type of secondary radiation.
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Nature 121 (3048), 501-502 (1928).
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(2) - NAKAMOTO (K.) -
Infrared and Raman spectra of inorganic and coordination compounds, Parts A and B,...
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