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Generalized Stokes parameters of random electromagnetic quasi-homogeneous beams on propagation

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Języki publikacji
EN
Abstrakty
EN
The expressions for the elements of the on-axis and transverse generalized Stokes parameters of random electromagnetic quasi-homogeneous beams on propagation are presented and are used to study the polarization properties of the beams. Some typical numerical calculations of the on-axis and transverse Stokes parameters, polarization properties of the beams on propagation are illustrated. The results show that for different sources all the on-axis parameters are identical in the near field and keep fixed values in the far field. But the transverse parameters are affected greatly by the properties of the source even in the near field. We have also found that the spatial profiles of the transverse parameters remain unchanged upon propagation.
Czasopismo
Rocznik
Strony
s. 205--216
Opis fizyczny
Bibliogr. 14 poz., wykr.
Twórcy
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  • Department of Optical Engineering, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu Province, China
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Bibliografia
  • [1] STOKES G.G., On the composition and resolution of streams of polarized light from different sources, Transactions of the Cambridge Philosophical Society 9, 1852, pp. 399–416.
  • [2] KOROTKOVA O., WOLF E., Generalized Stokes parameters of random electromagnetic beams, Optics Letters 30(2), 2005, pp. 198–200.
  • [3] SETÄLÄ T., TERVO J., FRIBERG A.T., Stokes parameters and polarization contrasts in Young’s interference experiment, Optics Letters 31(14), 2006, pp. 2208–2210.
  • [4] KOROTKOVA O., Changes in statistics of the instantaneous Stokes parameters of a quasi-monochromatic electromagnetic beam on propagation, Optics Communications 261(2), 2006, pp. 218–224.
  • [5] TERVO J., SETÄLÄ T., ROUEFF A., RÉFRÉGIER P., FRIBERG A.T., Two-point Stokes parameters: interpretation and properties, Optics Letters 34(20), 2009, pp. 3074–3076.
  • [6] BHASKAR KANSERI, SHYAMA RATH, HEM CHANDRA KANDPAL, Direct determination of the generalized Stokes parameters from the usual Stokes parameters, Optics Letters 34(6), 2009, pp. 719–721.
  • [7] BHASKAR KANSERI, HEM CHANDRA KANDPAL, Experimental determination of two-point Stokes parameters for a partially coherent broadband light beam, Optics Communications 283(23), 2010, pp. 4558–4562.
  • [8] XINYUE DU, DAOMU ZHAO, Changes in generalized Stokes parameters of stochastic electromagnetic beams on propagation through ABCD optical systems and in the turbulent atmosphere, Optics Communications 281(24), 2008, pp. 5968–5972.
  • [9] TAO WANG, DAOMU ZHAO, Stokes parameters of an electromagnetic light wave on scattering, Optics Communications 285(6), 2012, pp. 893–895.
  • [10] KRAVTSOV A.Y., BIEG B., Propagation of electromagnetic waves in weakly anisotropic media: Theory and applications, Optica Applicata 40(4), 2010, pp. 975–989.
  • [11] MANDEL L., WOLF E., Optical Coherence and Quantum Optics, Cambridge University Press, Cambridge, 1995, pp. 239–190.
  • [12] WOLF E., Unified theory of coherence and polarization of random electromagnetic beams, Physics Letters A 312(5–6), 2003, pp. 263–267.
  • [13] KOROTKOVA O., SALEM M., WOLF E., Beam conditions for radiation generated by an electromagnetic Gaussian Schell-model source, Optics Letters 29(11), 2004, pp. 1173–1175.
  • [14] BORN M., WOLF E., Principles of Optics, Pergamon Press, Oxford, 1980, pp. 581–590.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a33442d5-b378-4966-b90a-953be03bbec4
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