Диссертация (1097736), страница 40
Текст из файла (страница 40)
Coherent backscatter and the opposition eect fore-type asteroids. // Planetary and Space Science 1993. V.41. P.173181.[113] Picard G., Toan T. L., Quegan S. A three-dimensional radiative transfer modelto interpret ranging scatterometer measurements from a pine forest.
// Wavesin Random Media. 2004. V.14.P.S317S331.[114] Berry M. J., Baskey J. H., Westervelt R. M., Gossard A. C. Coherent electronicbackscattering in ballistic microstructures. // Phys. Rev. B. 1994. 50.P.88578860.[115] Oguchi T. Eect of incoherent scattering on attenuation and cross polarizationof millimeter wave due to rain: preliminary calculations at 34.8 GHz and 82GHzfor spherical raindrops. // J. Radio Res. Lab. 1980. V27.P.51.[116] Mishchenko M.I.
Enhanced backscattering of polarized light from discreterandom media: calculations in exactly the backscattering direction. // J. Opt.Soc. Am. A. 1992. V.9. P.97882.[117] Kobayashi S., Tanelli S., Iguchi T., Im E. Backscattering enhancement with anite beam width for millimeter-wavelength weather radars. // Proceedings ofSPIE. Microwave remote sensing of the atmosphere and environment IV.
2004.V.5654. P.10613.276[118] van Albada M. P., Lagendijk A. Vector character of light in weak localization:spatial anisotropy in coherent backscattering from a random medium. // Phys.Rev. B. 1987. V.36. P.2353.[119] Mandt C. E., Tsang L., Ishimaru A. Copolarized and depolarizedbackscattering enhancement of random discrete scatterers of large size basedon second-order ladder and cyclical theory. // J.
Opt. Soc. Am. A. 1990. V.7.P.58592.[120] Ihara T., Oguchi T.,Tazaki T. Measurement of backscattering enhancementdue to random particles at 30 GHz band using mirror image technique. //Proceedings of the URSI Commission F. Open Symposium. Cairns,Australia.2004. P.5964.[121] Kobayashi S. ,Oguchi T., Tanelli S., Im E. Backscattering enhancement onspheroid-shaped hydrometeors: considerations in water and ice particles ofuniform size, and MarshallPalmer distributed rains. // Radio Sci. 2007.
V.42.P.RS2001.[122] Oguchi T., Ihara T. Computer simulation of enhanced backscattering fromrandomly distributed spherical scatterers at 30 GHz and comparison withmeasurement. // Radio Sci. 2006. V.41. P.RS6002.[123] Ishimaru A.Wave propagation and scattering in random media. // N.Y.:IEEEPress, 1997. P.14774.[124] Wolf P.-E., Maret G. Weak localization and coherent backscattering of photonsin disordered media. // Phys. Rev. Lett.
1985. V.55. P.26962699.[125] Kuga Y., Ishimaru A. Retroreectance from a dense distribution of sphericalparticles. // J. Opt. Soc. Am. A. 1984. V.1 P.831835.[126] van der Mark M. B., van Albada M. P.,Lagendijk A. Light scattering instrongly scattering media: Multiple scattering and weak localization. // Phys.Rev. B. 1988. V.37. P.35753592.[127] Rogozkin D., Coherent backscattering of waves from disordered systems withlarge-scale inhomogeneities. // Laser Physics. 1995. V.5. P.787792.277[128] Marinyuk V. V., Rogozkin D.
B. Eects of nondiusive wave propagationupon coherent backscattering by turbid media. // Laser Physics 2009. V.19.P.176184.[129] Marinyuk V. V., Rogozkin D. B. Wings of coherent backscattering from adisordered medium with large inhomogeneities. // Phys. Rev. E. 2011. V.83.P.066604.[130] Tishkovets V. P. Multiple scattering of light by a layer of discrete randommedium: backscattering. // Journal of Quantitative Spectroscopy and RadiativeTransfer 2002. V.72. P.123 137.[131] Tishkovets V. P., Mishchenko M.
I. Coherent backscattering of light by alayer of discrete random medium. // Journal of Quantitative Spectroscopy andRadiative Transfer. V.86. 2004. P.161180.[132] Tishkovets V. P., Mishchenko M. I. Approximate calculation of coherentbackscattering for semi-innite discrete random media. // Journal ofQuantitative Spectroscopy and Radiative Transfer. 2009. V.110. P.139145.[133] Hapke B.
W. Bidirectional reectance spectroscopy: 5. the coherentbackscatter opposition eect and anisotropic scattering. // Icarus V.157. 2002.P.523534.[134] Hapke B. W., Shepard M. K., Nelson R. M., Smythe W. D., Piatek J. L. Aquantitative test of the ability of models based on the equation of radiativetransfer to predict the bidirectional reectance of a well-characterized medium.// Icarus. 2009. V.199. P.210218.[135] Muinonen K. Coherent backscattering of light by complex random media ofspherical scatterers: numerical solution. Waves in Random Media.
2004. V.14.P.365388.[136] Dlugach J. M., Mishchenko M. I., Liu L., Mackowski D. W. Numerically exactcomputer simulations of light scattering by densely packed, random particulatemedia. // Journal of Quantitative Spectroscopy and Radiative Transfer. V.112.2011. P.2068 2078.278[137] den Outer P. N., Lagendijk A. Inuence of the refractive index contrast oncoherent backscattering. // Optics Communications. 1993.
V.103. P.169173.[138] Krishna A. N., Mishra S. C. Discrete transfer method applied to radiativetransfer in a variable refractive index semitransparent medium. // Journal ofQuantitative Spectroscopy and Radiative Transfer, 102(3):432 440, 2006.[139] Ilyushin Y. A. Coherent backscattering enhancement in medium with variablerefractive index. // Journal of Quantitative Spectroscopy and RadiativeTransfer. 2013. V.117. P.133139.[140] Ilyushin Y. A. Coherent backscattering enhancement in refracting media:diusion approximation. // J. Opt.
Soc. Am. A. V.30. P.1305-1309. 2013.[141] Hapke B. Coherent backscatter and the radar characteristics of outer planetsatellites. // Icarus. 1990. V.88. P.407417.[142] Afanasiev A. The energy spectrum of spacecraft radio signals in the causticshadow zone of the sun: A new diagnostic of the solar coronal plasma.
// Journalof Atmospheric and Solar-Terrestrial Physics. 2005. V.67. P.10021013.[143] Ilyushin Y. A. Impact of the plasma uctuations in the martian ionosphereon the performance of the synthetic aperture ground-penetrating radar. //Planetary and Space Science V.57. P.14581466. 2009.[144] Arthern R., Winebrenner D., Waddington E. Densication of water icedeposits on the residual north polar cap of mars. // Icarus. 2000.
V.144. P.367381.[145] Ilyushin Y. A. Martian northern polar cap : layering and possible implicationsfor radar sounding. // Planetary and Space Science. 2004. V.52. P.11951207.[146] Lemonnier D. Dez V. L. Discrete ordinates solution of radiative transfer acrossa slab with variable refractive index. // Journal of Quantitative Spectroscopyand Radiative Transfer. 2002. V.73. P.195204.[147] Äàøåé Ð., Çàõàðèàñåí Ô., Ìàíê Ó., Óîòñîí Ê.
Ðàñïðîñòðàíåíèå çâóêà âîôëóêòóèðóþùåì îêåàíå. Ì.:Ìèð, 1982. 336 ñ.279[148] Bitjukov, A. A., Gherm, V. E., Zernov, N. N. On the solution of Markov'sparabolic equation for the second-order spaced frequency and positioncoherence function. // Radio Science. 2002.
V.37. N.4. P.19.[149] Ilyushin Y. A. Propagation of a Collimated Beam in the Refractive ScatteringMedium. // Radiophysics and Quantum Electronics. 2013. V.55. P.648-653.[150] Ñïðàâî÷íèê ïî ñïåöèàëüíûì ôóíêöèÿì. Ì.:Íàóêà, 1979. 830 ñ.[151] Âèãíåð Å.
Òåîðèÿ ãðóïï è åå ïðèëîæåíèÿ ê êâàíòîìåõàíè÷åñêîé òåîðèèàòîìíûõ ñïåêòðîâ Ì.: ÈË, 1961. 444 ñ.[152] Karp A. H., Greenstadt J., Fillmore J. A. Radiative transfer through anarbitrarily thick, scattering atmosphere. // J. Quant. Spectr. and Radiat.Transfer. 1980. V.24. P.391406.[153] Îöèñèê Ì. Í. Ñëîæíûé òåïëîîáìåí. Ì.:Ìèð, 1976. 615 c.[154] Ëóáåí÷åíêî À. Â. Ôóíêöèÿ ðàñïðåäåëåíèÿ îòðàæåííûõ ýëåêòðîíîâ ïîïðîáåãàì.
// Òåç. äîêë. XXIII Êîíôåðåíöèè ïî ýìèññèîííîé ýëåêòðîíèêå.Ò.1. Òàøêåíò.:Èí-ò ýëåêòðîíèêè. 1997. Ñ.163.[155] Kuscer I., Ribaric M. Matrix formalism in the theory of diusion of light. //Optica Acta. 1959. V.6. P.4251.[156] Çåãå Ý. Ï., ×àéêîâñêàÿ Ë. È. Ðàçëîæåíèå ýëåìåíòîâ ìàòðèöû ðàññåÿíèÿìîðñêîé âîäû ïî îáîáù¼ííûì ñôåðè÷åñêèì ôóíêöèÿì.
// Èçâ. ÀÍ ÑÑÑÐ.Ôèçèêà àòìîñôåðû è îêåàíà. 1981. Ò.17. Ñ.604613.[157] Ãîðîäíè÷åâ E. E., Êóçîâëåâ À. È., Ðîãîçêèí Ä. Á. Ìíîãîêðàòíîå ðàññåÿíèåïîëÿðèçîâàííîãî ñâåòà â ñðåäå ñ êðóïíûìè íåîäíîðîäíîñòÿìè. // ÆÝÒÔ.2007. Ò.131. Ñ.357-380.[158] Hofer M., Glatter O. Mueller matrix calculations for randomly orientedrotationally symmetric objects with low contrast. // Appl. Opt. 1989. V.28.P.23892400.280[159] Áóäàê Â.
Ï., Êîçåëüñêèé À. Â., Ñàâèöêèé Å. Í. Óëó÷øåíèå ñõîäèìîñòèìåòîäà ñôåðè÷åñêèõ ãàðìîíèê ïðè ñèëüíî àíèçîòðîïíîì ðàññåÿíèè. // Îïòèêà àòìîñôåðû è îêåàíà. 2004. Ò.17. Ñ.365-41.[160] Ôåäîðþê Ì. Â. Àñèìïòîòèêà. Èíòåãðàëû è ðÿäû. Ì.:Íàóêà, 1987. 544 ñ.Lopez-AlvarezM., Hernandez-Andres J., Greenler[161] Gedzelman S. D. , AngelR. Quantifying the milky sky experiment.
// Appl. Opt. 2008. v.47. P.H128H132.[162] Swanson N. L., Gehman V. M., Billard B. D., Gennaro T. L. Limits of thesmall-angle approximation to the radiative transport equation, // J. Opt. Soc.Am. A. 2001. V.18. P.385391.[163] Swanson N. L., Billard B. D., Gehman V. M., Gennaro T. L. Application ofthe small-angle approximation to ocean water types. // Appl. Opt. 2001.
V.40.P.36083613.[164] Arridge S. R. Optical tomography in medical imaging. // Inverse problems.1999. V.15. P.R41R93.[165] Hanson F., Radic S. High bandwidth underwater optical communication. //Appl. Opt. 2008. V.47. P.277283.[166] Îøëàêîâ Â. Ã. Ïàòåíò ÐÔ 2322371. Ñïîñîá îðèåíòèðîâàíèÿ äâèæóùåãîñÿ òðàíñïîðòà ïî ñâåòîâîìó ëó÷ó è óñòðîéñòâî äëÿ åãî ðåàëèçàöèè.Ïðèîðèòåò 01.02.2006 ã.[167] Ãðîìîâ Ã. Í. Äèôôåðåíöèàëüíî-ãåîìåòðè÷åñêèé ìåòîä íàâèãàöèè. Ì.: Ðàäèî è ñâÿçü, 1986. 384 ñ.[168] Ëàçåðíûé êîíòðîëü àòìîñôåðû. / Ïîä ðåä. Ý. Ä. Õèíêëí.