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GELBART Intermolecular spectroscopy
POLL Intermolecular spectroscopy of gases
J VAN KRANENDONK Intercollisional interference effects
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absorption amagat anisotropic approximation argon assumed atoms average calculated Chem coefficients collision collision-induced compared components consider constant contribution correlation function course decay defined denotes density dependence depolarized derived described determined dipole discussed distance distribution dynamics effects equation evaluated example experiment experimental expression fact factor field fluctuations fluids force frequency given gives important indicated induced integrated intensity interaction intermolecular involving isotropic light scattering limit line shape liquid means measurements memory function molecular molecules moment moments motion observed obtained orientational pair particles Phys polar polarizability potential present problem processes properties quantities Raman range reduced refer relative relaxation respectively rotational separation shown shows simulations solid spectra spectrum symmetry temperature term theoretical theory tion transitions translational values vector vibrational wave write zero