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Volume 23 Issue 4
Apr.  2001
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Guo Lixin, Wu Zhensen, Zhang Min . Light Scattering from a Diffuse Target in the Turbulent Atmosphere[J]. Journal of Electronics & Information Technology, 2001, 23(4): 388-395.
Citation: Guo Lixin, Wu Zhensen, Zhang Min . Light Scattering from a Diffuse Target in the Turbulent Atmosphere[J]. Journal of Electronics & Information Technology, 2001, 23(4): 388-395.

Light Scattering from a Diffuse Target in the Turbulent Atmosphere

  • Received Date: 1999-10-19
  • Rev Recd Date: 2000-02-11
  • Publish Date: 2001-04-19
  • The extended Huygens-Fresnel principle is utilized to make analysis of scattering characteristics of diffuse targets in the turbulent atmosphere with considering the fluctuation of the log-amplitude, the covariance function and variance of the scattering intensity are derived in detail, and the numerical results are given. The influence of turbulence strength, wavelength and propagating distance on the covariance function and normalized variance of the scattering intensity is discussed.
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  • V.I. Tatarskii, Wave Propagation in a Turbulent Medium, New York, McGraw-Hill Book Company, 1961, 103-165.[2]宋正方,应用大气光学基础,北京,气象出版社,1990,第二章.[3]张逸新,迟泽英,光波在大气中的传输与成像,北京,国防工业出版社,1997,146-166.[4]叶公节,刘兆汉,电离层波理论,北京,科学出版社,1983,285-338.[5]C.M. Soukoulis, et al., Propagation of classical waves in random media, Phys. Rev. B, 1993,49(8), 3800-3804.[6]M.S. Belenkii, Effect of the inner scale of turbulence on the atmospheric modulation transfer function, J. Opt. Soc. Am., 1996, 13(5), 1078-1082.[7]M.H. Lee, et al., Statistics of speckle propagation through the turbulent atmosphere, J. Opt. Soc. Am., 1976, 66(11), 1164-1172.[8]崔索民,吴振森,波束入射时大气湍流中漫射目标的散射,电波科学学报,1993,8(4),22-28.[9]M.H. Lee, et al., Generalized spherical wave mutual coherence function, J. Opt. Soc. Am., 1977,67(9), 1279-1281.[10]H. T. Yura, Mutual coherence function of a finite cross section optical beam propagating in a turbulent medium, Appl. Opt. , 1972, 11(6), 1399-1406.[11]D.L. Fried, Atmospheric modulation noise in an optical heterodyne receiver, IEEE Trans. on Quantum Electron, 1967, 3(2), 213-221.[12]S.F. Clifford, et al., Equivalence of two theories of strong optical scintillation, J. Opt. Soc. Am., 1974, A-64(12): 1641-1644.[13]K. J. Richard, et al., Propagation of multi-wavelength laser radiation through atmospheric turbulence, U.S. AD Report, A0679571, 27-32.
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