Coherence and polarization properties of far fields generated by quasi-homogeneous planar electromagnetic sources

被引:50
|
作者
Korotkova, O [1 ]
Hoover, BG
Gamiz, VL
Wolf, E
机构
[1] Univ Cent Florida, CREOL, FPCE, Coll Opt, Orlando, FL 32816 USA
[2] Univ Rochester, Dept Phys & Astron, Rochester, NY 14627 USA
[3] Adv Opt Technol, Albuquerque, NM 87198 USA
[4] USAF, Res Lab, Directed Energy Directorate, Kirtland AFB, NM 87117 USA
[5] Univ Rochester, Inst Opt, Rochester, NY 14627 USA
关键词
D O I
10.1364/JOSAA.22.002547
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In studies of radiation from partially coherent sources the so-called quasi-homogeneous (QH) model sources have been very useful, for instance in elucidating the behavior of fields produced by thermal sources. The analysis of the fields generated by such sources has, however, been largely carried out in the framework of scalar wave theory. In this paper we generalize the concept of the QH source to the domain of the electromagnetic theory, and we derive expressions for the elements of the cross-spectral density matrix, for the spectral density, the spectral degree of coherence, the degree of polarization, and the Stokes parameters of the far field generated by planar QH sources of uniform states of polarization. We then derive reciprocity relations analogous to those familiar in connection with the QH scalar sources. We illustrate the results by determining the properties of the far field produced by transmission of an electromagnetic beam through a system of spatial light modulators. (c) 2005 Optical Society of America.
引用
收藏
页码:2547 / 2556
页数:10
相关论文
共 50 条
  • [31] Centers of quasi-homogeneous polynomial planar systems
    Algaba, A.
    Fuentes, N.
    Garcia, C.
    [J]. NONLINEAR ANALYSIS-REAL WORLD APPLICATIONS, 2012, 13 (01) : 419 - 431
  • [32] Centers of quasi-homogeneous polynomial planar systems
    Rahimabadi, A.
    Taghirad, H. D.
    [J]. NONLINEAR ANALYSIS-REAL WORLD APPLICATIONS, 2017, 37 : 213 - 216
  • [33] ELECTROMAGNETIC WAVE SCATTERING BY QUASI-HOMOGENEOUS OBSTACLES
    Tsitsas, N. L.
    Valagiannopoulos, C. A.
    [J]. ADVANCED TOPICS IN SCATTERING THEORY AND BIOMEDICAL ENGINEERING, 2010, : 169 - 176
  • [34] Quasi-homogeneous linearization of degenerate vector fields
    Algaba, A.
    Garcia, C.
    Reyes, M.
    [J]. JOURNAL OF MATHEMATICAL ANALYSIS AND APPLICATIONS, 2020, 483 (02)
  • [35] Beam radiated from quasi-homogeneous uniformly polarized electromagnetic source scattering on quasi-homogeneous media
    Xin, Yu
    Chen, Yanru
    Zhao, Qi
    Zhou, MuChun
    [J]. OPTICS COMMUNICATIONS, 2007, 278 (02) : 247 - 252
  • [36] Radiometry of quasi-homogeneous sources and Wigner radiometry
    Gitin, Andrey V.
    [J]. OPTIK, 2012, 123 (18): : 1659 - 1668
  • [37] QUASI-HOMOGENEOUS SOURCES AND GEOMETRICAL-OPTICS
    GORI, F
    [J]. OPTICS LETTERS, 1979, 4 (11) : 354 - 356
  • [38] LIMIT CYCLES OF PLANAR SYSTEM DEFINED BY THE SUM OF TWO QUASI-HOMOGENEOUS VECTOR FIELDS
    Huang, Jianfeng
    Liang, Haihua
    [J]. DISCRETE AND CONTINUOUS DYNAMICAL SYSTEMS-SERIES B, 2021, 26 (02): : 861 - 873
  • [39] Generalized van Cittert-Zernike theorem for the cross-spectral density matrix of quasi-homogeneous planar electromagnetic sources
    Rodriguez-Herrera, Oscar G.
    Tyo, J. Scott
    [J]. JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 2012, 29 (09) : 1939 - 1947
  • [40] Coherence-polarization properties of fields radiated from transversely periodic electromagnetic sources
    Santarsiero, M.
    de Sande, J. C. G.
    Piquero, G.
    Gori, F.
    [J]. JOURNAL OF OPTICS, 2013, 15 (05)