Computer Science
Scientific paper
Feb 1990
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1990jqsrt..43..179k&link_type=abstract
Journal of Quantitative Spectroscopy and Radiative Transfer (ISSN 0022-4073), vol. 43, Feb. 1990, p. 179-185.
Computer Science
Absorption Spectra, Diffuse Radiation, Gas Flow, Line Spectra, Optical Reflection, Translational Motion, Bessel Functions, Invariance, Isotropic Media, Lorentz Transformations
Scientific paper
The diffuse reflection coefficient of a semi-infinite, plane-parallel gaseous layer in translation is derived by application of Ambartsumian's invariance principle, assuming isotropic and non-coherent line scattering with complete redistribution in frequency and neglecting absorption in the continuum. Since the relativistic variance of all of the quantities involved is not known a priori, the result is obtained by using an invariant formulation of the problem in the rest-frame of the gas. Cases of interest for application of this result are indicated.
Kichenassamy Satyanad
Krikorian Ralph A.
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