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Light scattering of large rough particles application to cometary grainsWhile the electromagnetic field scattered by a spherical particle is classically obtained by the Helmholtz equation, the general case of an arbitrary particle may be investigated in the general framework of the interaction of a wave with a scattering potential. A wave function then satisfies the Schroedinger equation. The general solution of the Schroedinger equation is given. The main disadvantage of this approach are its restriction to large particles and its scalar nature preventing the calculation of the polarization. However, Perrin and Lamy have shown how to avoid the second limitation and retrieve a vectorial description. They proved that in the case of large spheres when the ad hoc assumptions are satisfied, the expression of the scattering amplitude may be approximated by an expansion series in partial waves, i.e., on a discrete basis. The analogy may be generalized, and the ratio of the two components for a rough particle obtained by taking the ratio of the reflectivities for the two directions of polarization. These reflectivities involve the simple and double reflections calculated following the method developed by Wolff for rough surfaces. The theory is further detailed.
Document ID
19890003986
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Lamy, Philippe L.
(Laboratoire d'Astronomie Spatiale Marseille, France)
Perrin, J. M.
(Laboratoire d'Astronomie Spatiale Marseille, France)
Date Acquired
September 5, 2013
Publication Date
September 1, 1988
Publication Information
Publication: NASA, Washington, Infrared Observations of Comets Halley and Wilson and Properties of the Grains
Subject Category
Astronomy
Accession Number
89N13357
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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