Tytuł artykułu
Treść / Zawartość
Pełne teksty:
Identyfikatory
DOI
Warianty tytułu
Języki publikacji
Abstrakty
Based on the extended Huygens–Fresnel principle, variations in generalized Stokes parameters of stochastic anisotropic electromagnetic beams propagating through modified non-Kolmogorov atmospheric turbulence have been analyzed. The changes in generalized Stokes parameters with different turbulence parameters and source parameters were analyzed first. After that, the distributions of the spectral degrees of cross-polarization (SDCP) of isotropic beams and anisotropic beams were simulated. The results show that the profiles of distribution of SDCP of these two kinds of beams are very different in the near field, and will fluctuate through the propagation in atmospheric turbulence, but at last, when the propagation distance is long enough, the difference in the source makes a slight difference in the final profiles of SDCP in the output plane. They mainly depended on the turbulence perturbation, and in the weak turbulence, the profiles of final distribution show more flatter features.
Czasopismo
Rocznik
Tom
Strony
773--783
Opis fizyczny
Bibliogr. 25 poz., rys., wykr.
Twórcy
autor
- Department of Optical Engineering, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu Province, China
autor
- Department of Optical Engineering, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu Province, China
autor
- Department of Optical Engineering, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu Province, China
autor
- Department of Optical Engineering, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu Province, China
autor
- Department of Optical Engineering, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu Province, China
autor
- nstitute of Fiber Optic Communication & Information Engineering, College of Information Engineering, Zhejiang University of Technology, Hangzhou, Zhejiang Province, China
autor
- West-East Gas Pipeline Company of China Petroleum, China
Bibliografia
- [1] ELLIS J., DOGARIU A., Complex degree of mutual polarization, Optics Letters 29(6), 2004, pp. 536–538.
- [2] VOLKOV S.N., JAMES D.F.V., SHIRAI T., WOLF E., Intensity fluctuations and the degree of cross--polarization in stochastic electromagnetic beams, Journal of Optics A: Pure and Applied Optics 10(5), 2008, article 055001.
- [3] JIA LI, YANRU CHEN, QI ZHAO, MUCHUN ZHOU, Degrees of cross-polarization of a partially coherent electromagnetic beam in uniaxial crystals, Optica Applicata 40(1), 2010, pp. 93–100.
- [4] JIXIONG PU, KOROTKOVA O., Propagation of the degree of cross-polarization of a stochastic electromagnetic beam through the turbulent atmosphere, Optics Communications 282(9), 2009, pp. 1691–1698.
- [5] PÄÄKKÖNEN P., TURUNEN J., VAHIMAA P., FRIBERG A.T., WYROWSKI F., Partially coherent Gaussian pulses, Optics Communications 204(1–6), 2002, pp. 53–58.
- [6] CHAOLIANG DING, ZHIGUO ZHAO, LIUZHAN PAN, XIAO YUAN, BAIDA LÜ, Propagation of the degree of cross-polarization of stochastic electromagnetic pulsed beams in free space, Optics and Laser Technology 43(7), 2011, pp. 1179–1183.
- [7] LAJUNEN H., VAHIMAA P., TERVO J., Theory of spatially and spectrally partially coherent pulses, Journal of the Optical Society of America A 22(8), 2005, pp. 1536–1545.
- [8] LAJUNEN H., TURUNEN J., VAHIMAA P., TERVO J., WYROWSKI F., Spectrally partially coherent pulse trains in dispersive media, Optics Communications 255(1–3), 2005, pp. 12–22.
- [9] XINYUE DU, DAOMU ZHAO, KOROTKOVA O., Changes in the statistical properties of stochastic anisotropic electromagnetic beams on propagation in the turbulent atmosphere, Optics Express 15(25), 2007, pp. 16909–16915.
- [10] YING ZHOU, KAIKAI HUANG, DAOMU ZHAO, Changes in the statistical properties of stochastic an-isotropic electromagnetic beams propagating through the oceanic turbulence, Applied Physics B 109(2), 2012, pp. 289–294.
- [11] ZILBERMAN A., GOLBRAIKH E., KOPEIKA N.S., Propagation of electromagnetic waves in Kolmogorov and non-Kolmogorov atmospheric turbulence: three-layer altitude model, Applied Optics 47(34), 2008, pp. 6385–6391.
- [12] BINDANG XUE, LINYAN CUI, WENFANG XUE, XIANGZHI BAI, FUGEN ZHOU, Generalized modified atmospheric spectral model for optical wave propagating through non-Kolmogorov turbulence, Journal of the Optical Society of America A 28(5), 2011, pp. 912–916.
- [13] CUI LIN-YAN, XUE BIN-DANG, CAO XIAO-GUANG, DONG JIAN-KANG, WANG JIE-NING, Generalized atmospheric turbulence MTF for wave propagating through non-Kolmogorov turbulence, Optics Express 18(20), 2010, pp. 21269–21283.
- [14] KOROTKOVA O., FARWELL N., Effect of oceanic turbulence on polarization of stochastic beams, Optics Communications 284(7), 2011, pp. 1740–1746.
- [15] TOSELLI I., ANDREWS L.C., PHILLIPS R.L., FERRERO V., Free space optical system performance for laser beam propagation through non-Kolmogorov turbulence, Optical Engineering 47(2), 2008, article 026003.
- [16] GERÇEKCIOLU H., BAYKAL Y., Intensity fluctuations of flat-topped beam in non-Kolmogorov weak turbulence, Journal of the Optical Society of America A 29(2), 2012, pp. 169–173.
- [17] LINYAN CUI, BINDANG XUE, LEI CAO, SHILING ZHENG, WENFANG XUE, XIANGZHI BAI, XIAOGUANG CAO, FUGEN ZHOU, Irradiance scintillation for Gaussian-beam wave propagating through weak non-Kolmogorov turbulence, Optics Express 19(18), 2011, pp. 16872–16884.
- [18] KOROTKOVA O., SHCHEPAKINA E., Color changes in stochastic light fields propagating in non-Kolmogorov turbulence, Optics Letters 35(22), 2010, pp. 3772–3774.
- [19] WENHE DU, LIYING TAN, JING MA, YIJUN JIANG, Temporal-frequency spectra for optical wave propagating through non-Kolmogorov turbulence, Optics Express 18(6), 2010, pp. 5763–5775.
- [20] KOROTKOVA O., WOLF E., Generalized Stokes parameters of random electromagnetic beams, Optics Letters 30(2), 2005, pp. 198–200.
- [21] 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.
- [22] 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.
- [23] 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.
- [24] YINGBING ZHU, DAOMU ZHAO, Generalized Stokes parameters of a stochastic electromagnetic beam propagating through a paraxial ABCD optical system, Journal of the Optical Society of America A 25(8), 2008, pp. 1944–1948.
- [25] 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.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6377fc5d-087f-4be6-837f-99e312ae4542