Title :
Propagation of polarized radiation in a seawater-like scattering medium
Author :
Arkhelyuk, A.D. ; Dobrovolsky, Y.G. ; Podkamen, L.I. ; Ushenko, Y.A.
Author_Institution :
Dept. of Correlation Opt., Chernovtsy Nat. Univ., Chernovtsy, Ukraine
Abstract :
The regularities of change elements of the matrix transformation in scattering media from its optical-geometrical coordinates outside the geometric area of the beam were studied in the present paper. On the basis of this investigation we can estimate it. In the coordinate system of the optical thickness along the beam propagation direction and in the orthogonal direction of a light field in the scattering medium (outside the exploratory beam), the points with maximum values of the light beam intensity and the degree of linear polarization coincide with each other. Outside the beam geometric area, the increase of absorption in the medium leads to the decrease in the maximum of the total intensity from the optical thickness and the shift of the location of the maximum towards larger ones. Zone of the light beam from which the maximum intensity of the scattered light is realized has a clearly determined optical coordinate depending on the geometry of the experiment.
Keywords :
light polarisation; light propagation; light scattering; matrix algebra; seawater; beam geometric area; beam propagation direction; coordinate system; light beam intensity; light beam zone; light field orthogonal direction; linear polarization degree; matrix transformation; optical thickness; optical-geometrical coordinates; polarized radiation propagation; seawater-like scattering medium; Geometrical optics; Media; Optical polarization; Optical scattering; Optical variables control; Silicon;
Conference_Titel :
Microwave and Telecommunication Technology (CriMiCo), 2012 22nd International Crimean Conference
Conference_Location :
Sevastopol, Crimea
Print_ISBN :
978-1-4673-1199-1