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| 8 | <title>Refractive indices references</title> |
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| 19 | <tr> |
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| 20 | <td> |
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| 21 | <center><b><font color="#FF0000"><font size=+2>Aerosols |
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| 22 | bibliography</font></font></b></center> |
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| 23 | </td> |
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| 24 | </tr> |
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| 25 | </table></center> |
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| 26 | <br> |
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| 27 | <center><table COLS=1 WIDTH="640" > |
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| 28 | <tr> |
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| 29 | <td> |
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| 30 | <ol> |
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| 31 | <li> |
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| 32 | <font face="Arial,Helvetica"><font size=-1>d'Almedia G.A., P. Koepke, and |
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| 33 | E.P. Shettle, "<i>Atmospheric Aerosols: Global Climatology and Radiative |
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| 34 | Characteristics</i>", A. Deepak Publishing, 561 pp. (1991)</font></font></li> |
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| 35 | |
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| 36 | <li> |
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| 37 | <font face="Arial,Helvetica"><font size=-1>Biermann, U.M., B.P. Luo, and |
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| 38 | Th. Peter, "Absorption Spectra and Optical Constants of Binary and Ternary |
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| 39 | Solutions of H<sub>2</sub>SO<sub>4</sub>, HNO<sub>3</sub>, and H<sub>2</sub>O |
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| 40 | in the Mid Infrared at Atmospheric Temperatures", <i>J.Phys.Chem</i>. <b>A |
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| 41 | 104</b>, 783­793 (2000).</font></font></li> |
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| 42 | |
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| 43 | <li> |
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| 44 | <font face="Arial,Helvetica"><font size=-1>Clapp, M.L., R.E. Miller, and |
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| 45 | D.R. Worsnop, "Frequency­Dependent Optical Constants of Water Ice Obtained |
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| 46 | Directly from Aerosol Extinction Spectra", |
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| 47 | <i>J.Phys.Chem</i>. |
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| 48 | <b>99</b>, |
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| 49 | 6317­6326 (1995).</font></font></li> |
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| 50 | |
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| 51 | <li> |
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| 52 | <font face="Arial,Helvetica"><font size=-1>Dorsey, N. E., "Properties of |
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| 53 | ordinary water-substance in all its phases: water vapor and all the ices", |
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| 54 | American Chemistry Society, Monograph Series, Reinhold Publishing Corp., |
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| 55 | New York, NY, 332-338 (1940).</font></font></li> |
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| 56 | |
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| 57 | <li> |
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| 58 | <font face="Arial,Helvetica"><font size=-1>Deirmendjian D., <i>Electromagnetic |
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| 59 | Scattering on Spherical Polydispersions. |
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| 60 | </i>Elsevier, 290 pp. (1969)</font></font></li> |
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| 61 | |
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| 62 | <li> |
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| 63 | <font face="Arial,Helvetica"><font size=-1>Downing H.D., and Williams D., |
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| 64 | "Optical constants of water in the infrared", |
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| 65 | <i>J.Geophys.Res</i>., |
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| 66 | <b>80</b>, |
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| 67 | 1656-1661 (1975).</font></font></li> |
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| 68 | |
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| 69 | <li> |
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| 70 | <font face="Arial,Helvetica"><font size=-1>Drummond, D. G., "Absorption |
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| 71 | coefficients of crystal quartz in the infrared", |
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| 72 | <i>Proc. Roy. Soc. (London)</i>-Series |
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| 73 | A,<b>153</b>, 328-338 (1936).</font></font></li> |
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| 74 | |
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| 75 | <li> |
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| 76 | <font face="Arial,Helvetica"><font size=-1>Eldridge, J. E. and Palik, E. |
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| 77 | D., "Sodium Chloride", in "<i>Handbook of Optical Constants of Solids</i>", |
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| 78 | Edited by E. D. Palik, Academic Press, Inc., Orlando, FL, 775-793 (1985).</font></font></li> |
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| 79 | |
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| 80 | <li> |
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| 81 | <font face="Arial,Helvetica"><font size=-1>Fenn, R. W., Clough, S. A., |
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| 82 | Gallery, W. O., Good, R. E., Kneizys, F. X., Mill, J. D., Rothman, L. S. |
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| 83 | and Shettle, E.P.,"Optical and infrared properties of the atmosphere", |
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| 84 | Chapter 18 in <i>Handbook of Geophysics and the Space Environment</i>, |
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| 85 | Edited by A.S. Jursa, Air Force Geophysics Laboratory, Hanscom AFB, MA.</font></font></li> |
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| 86 | |
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| 87 | <li> |
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| 88 | <font face="Arial,Helvetica"><font size=-1>Fischer K., "Mass absorption |
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| 89 | coefficient of natural aerosol particles in 0,4 - 2,4 mm wavelength interval", |
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| 90 | <i>Contr. |
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| 91 | Atm. Phys</i>., <b>46</b>, 89-100 (1973).</font></font></li> |
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| 92 | |
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| 93 | <li> |
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| 94 | <font face="Arial,Helvetica"><font size=-1>Fischer K., "The optical constants |
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| 95 | of atmospheric aerosol particles in the 7,5 - 12 mm spectral region", <i>Tellus</i>, |
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| 96 | <b>28</b>, |
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| 97 | 266-274 (1976).</font></font></li> |
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| 98 | |
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| 99 | <li> |
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| 100 | <font face="Arial,Helvetica"><font size=-1>Galuza, A. I., Eremenko, V. |
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| 101 | V. and Kirichenko, A. P., "Analysis of hematite reflection spectrum by |
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| 102 | the Kramers-Kronig method", <i>Sov. Phys. Solid State</i>, <b>21</b>, 654-656 |
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| 103 | (1979).</font></font></li> |
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| 104 | |
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| 105 | <li> |
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| 106 | <font face="Arial,Helvetica"><font size=-1>Grams G., et al., "Compex index |
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| 107 | of refraction of airborn fly ash determined by laser radar and collection |
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| 108 | of particles at 13 km", <i>J. Atm. Scie</i>., |
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| 109 | <b>29</b>, 900-905 (1972).</font></font></li> |
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| 110 | |
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| 111 | <li> |
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| 112 | <font face="Arial,Helvetica"><font size=-1>Gray, D. C., <i>"American Institute |
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| 113 | of Physics Handbook"</i>, McGraw-Hill, New York, NY, 1963, 2nd Edition.</font></font></li> |
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| 114 | |
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| 115 | <li> |
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| 116 | <font face="Arial,Helvetica"><font size=-1>Hale, G. M. and Querry, M. R., |
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| 117 | "Optical constants of water in the 200 mm to 200 um wavelength region", |
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| 118 | <i>Appl. |
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| 119 | Opt.</i>,<b>12</b>, 555-563 (1973)</font></font></li> |
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| 120 | |
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| 121 | <li> |
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| 122 | <font face="Arial,Helvetica"><font size=-1>Hanbook of clouds and cloudy |
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| 123 | atmosphere, 649 pp., Leningrad, 1989 (in Russian)</font></font></li> |
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| 124 | |
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| 125 | <li> |
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| 126 | <font face="Arial,Helvetica"><font size=-1>Hess M., and M. Wiegner, "COP: |
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| 127 | A data library of optical properties of hexagonal ice crystals", <i>Appl. |
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| 128 | Optics</i>, <b>33</b>, 7740-7746 (1994).</font></font></li> |
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| 129 | |
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| 130 | <li> |
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| 131 | <font face="Arial,Helvetica"><font size=-1>Hess M., P. Koepke, and I. Schult, |
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| 132 | "Optical properties of Aerosols and Clouds: The software package OPAC", |
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| 133 | <i>Bulletin |
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| 134 | of American Meteorological Society</i>, <b>79</b>, 831-844 (1998).</font></font></li> |
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| 135 | |
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| 136 | <li> |
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| 137 | <font face="Arial,Helvetica"><font size=-1>Hummel, J. R., Shettle, E. P. |
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| 138 | and Longtin, D. R. "<i>A New Background Stratospheric Aerosol Model for |
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| 139 | Use in Atmospheric Radiation Models</i>", AFGL-TR-88-0166, Air Force Geophysics |
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| 140 | Laboratory, Hanscom AFB, MA, August 1988.</font></font></li> |
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| 141 | |
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| 142 | <li> |
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| 143 | <font face="Arial,Helvetica"><font size=-1>Kerker, M., Scheiner, P., Cooke, |
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| 144 | D. D. and Kratohvil, J.P., "Absorption index and color of colloidal hematite", |
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| 145 | <i>J. |
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| 146 | Colloid. Interface Sci.</i>, |
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| 147 | <b>71, |
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| 148 | </b>176-187 (1979).</font></font></li> |
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| 149 | |
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| 150 | <li> |
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| 151 | <font face="Arial,Helvetica"><font size=-1>Koepke P., M. Hess, I. Schult, |
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| 152 | and E.P. Shettle, "<i>Global aerosol dataset</i>", Report N 243, Max-Plank-Institut |
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| 153 | fuer Meteorologie, Hamburg, 44 pp., 1997.</font></font></li> |
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| 154 | |
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| 155 | <li> |
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| 156 | <font face="Arial,Helvetica"><font size=-1>Kou L., Labrie D., and Chylek |
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| 157 | P., "Refractive indices of water and ice in the 0.65 to 2.5 micron range", |
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| 158 | <i>Appl.Opt.,</i><b>32</b>, |
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| 159 | 3531-3540 (1993).</font></font></li> |
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| 160 | |
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| 161 | <li> |
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| 162 | <font face="Arial,Helvetica"><font size=-1>Longtin, D. R., Shettle, E. |
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| 163 | P., Hummel, J. R. and Pryce, J. D., "<i>A Wind Dependent Desert Aerosol |
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| 164 | Model: Radiative Properties</i>", AFGL-TR-88-0112, Air Force Geophysics |
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| 165 | Laboratory, Hanscom AFB, MA, April 1988.</font></font></li> |
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| 166 | |
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| 167 | <li> |
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| 168 | <font face="Arial,Helvetica"><font size=-1>Niedziela, R.F., R.E. Miller, |
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| 169 | and D.R. Worsnop, "Temperature and Frequency­Dependent Optical Constants |
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| 170 | for Nitric Acid Dihydrate from Aerosol Spectroscopy", |
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| 171 | <i>J.Phys.Chem</i>. |
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| 172 | <b>A |
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| 173 | 102</b>, 6477­6484 (1998).</font></font></li> |
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| 174 | |
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| 175 | <li> |
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| 176 | <font face="Arial,Helvetica"><font size=-1>Niedziela, R.F., M.L. Norman, |
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| 177 | C.L. deForest, R.E. Miller, and D.R. Worsnop, "A Temperature and Composition­Dependent |
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| 178 | Study of H<sub>2</sub>SO<sub>4</sub> Aerosol Optical Constants Using Fourier |
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| 179 | Transform and Tunable Diode Laser Infrared Spectroscopy", <i>J.Phys.Chem</i>. |
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| 180 | <b>A |
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| 181 | 103</b>, 8030­8040 (1999).</font></font></li> |
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| 182 | |
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| 183 | <li> |
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| 184 | <font face="Arial,Helvetica"><font size=-1>Norman, M.L., J. Qian, R.E. |
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| 185 | Miller, and D.R. Worsnop, "Infrared complex refractive indices of supercooled |
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| 186 | liquid HNO<sub>3</sub>/H<sub>2</sub>O aerosols", <i>J.Geophys.Res.</i><b>104</b>, |
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| 187 | 30571­30584 (1999).</font></font></li> |
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| 188 | |
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| 189 | <li> |
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| 190 | <font face="Arial,Helvetica"><font size=-1>Onari, S., Arai, T. and Kudo, |
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| 191 | K., "Infrared lattice vibrations and dielectric dispersion in - Fe<sub>2</sub>O<sub>3</sub>", |
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| 192 | <i>Phys. |
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| 193 | Rev.,</i> <b>B16</b>, 1717-1721 (1977)</font></font></li> |
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| 194 | |
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| 195 | <li> |
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| 196 | <font face="Arial,Helvetica"><font size=-1>Palmer K.F. and Dudley Williams, |
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| 197 | "Optical constants of sulfuric acid: Application to the clouds of Venus?", |
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| 198 | <i>Appl.Opt.,</i><b>14</b>, |
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| 199 | 208-219 (1975).</font></font></li> |
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| 200 | |
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| 201 | <li> |
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| 202 | <font face="Arial,Helvetica"><font size=-1>Philipp, H. R., "Silicon dioxide |
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| 203 | (SiO<sub>2</sub>), type-(crystalline)", in "<i>Handbook of Optical Constants |
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| 204 | of Solids</i>", Edited by E. D. Palik, Academic Press, Inc., Orlando, FL, |
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| 205 | 719-747 (1985).</font></font></li> |
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| 206 | |
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| 207 | <li> |
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| 208 | <font face="Arial,Helvetica"><font size=-1>Pueshel R.F., and P.M. Kuhn, |
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| 209 | "Infrared absorption of tropospheric aerosols: urban and rural aerosols |
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| 210 | of Phoenix, Arizona", <i>J. Geophys. Res</i>., |
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| 211 | <b>80</b>, 2961-2962 (1975).</font></font></li> |
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| 212 | |
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| 213 | <li> |
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| 214 | <font face="Arial,Helvetica"><font size=-1>Quenzel H., and H. Mueller, |
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| 215 | "<i>Optical properties of single Mie particles: Diagrams of intensity-, |
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| 216 | extinction-, scattering-, and absorption efficiencies</i>", Universitaet |
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| 217 | Muenchen, Meteorologisches Institut, Wiss. Mit., Nr 34, 59 pp., 1978.</font></font></li> |
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| 218 | |
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| 219 | <li> |
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| 220 | <font face="Arial,Helvetica"><font size=-1>Querry, M.R., and I.L. Tyler, |
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| 221 | "Reflectance and complex refractive indices in the infrared of aqueous |
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| 222 | solutions of nitric acid", <i>J.Chem.Phys</i>. |
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| 223 | <b>72</b>, 2495­2499 |
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| 224 | (1980).</font></font></li> |
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| 225 | |
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| 226 | <li> |
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| 227 | <font face="Arial,Helvetica"><font size=-1>Ray, P. S., "Broadband complex |
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| 228 | refractive indices of ice and water", <i>Appl. Opt</i>., <b>11</b>,1836-1844 |
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| 229 | (1972).</font></font></li> |
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| 230 | |
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| 231 | <li> |
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| 232 | <font face="Arial,Helvetica"><font size=-1>Remsberg E.E., Lavery D., and |
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| 233 | Crawford B., "Optical constants for sulfuric and nitric acids", <i>J.Chem. |
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| 234 | and Engin. Data</i>, <b>19</b>, 263-255 (1974).</font></font></li> |
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| 235 | |
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| 236 | <li> |
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| 237 | <font face="Arial,Helvetica"><font size=-1>Richwine, L.J., M.L. Clapp, |
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| 238 | R.E. Miller, and D.R. Worsnop, "Complex refractive indices in the infrared |
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| 239 | of nitric acid trihydrate aerosols", <i>Geo.Res.Lett</i>. |
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| 240 | <b>22</b>, 2625­2628 |
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| 241 | (1995).</font></font></li> |
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| 242 | |
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| 243 | <li> |
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| 244 | <font face="Arial,Helvetica"><font size=-1>Rublev A.N., "Algorithms and |
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| 245 | calculations of aerosol phase functions", Internal note IAE-5715/16 of |
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| 246 | the Russian Research Center "Kurchatov Institute", 51 pp., 1994 (in Russian)</font></font></li> |
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| 247 | |
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| 248 | <li> |
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| 249 | <font face="Arial,Helvetica"><font size=-1>Shettle, E. P. and Volz, F. |
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| 250 | E., "Optical constants for meteoric dust aerosol models" in "<i>Atmospheric |
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| 251 | Aerosols: Their Optical Properties and Effects</i>", a Topical Meeting |
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| 252 | on Atmospheric Aerosols sponsored by the Optical Society of America and |
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| 253 | NASA Langley Research Center, Williamsburg, VA, 13-15 Dec. 1976. NASA Conference |
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| 254 | Publication CP 2004</font></font></li> |
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| 255 | |
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| 256 | <li> |
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| 257 | <font face="Arial,Helvetica"><font size=-1>Shettle, E. P. and Fenn, R. |
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| 258 | W., <i>"Models for the Aerosols of the Lower Atmosphere and the Effects |
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| 259 | of Humidity Variations on Their Optical Properties"</i>, AFGL-TR-79-0214, |
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| 260 | 20 Sept 1979, ADA085951.</font></font></li> |
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| 261 | |
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| 262 | <li> |
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| 263 | <font face="Arial,Helvetica"><font size=-1>Spitzer, W. G. and Kleinman, |
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| 264 | D. A., "Infrared lattice bands of quartz", |
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| 265 | <i>Phys. Rev</i>., <b>121, </b>1324-1335 |
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| 266 | (1961).</font></font></li> |
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| 267 | |
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| 268 | <li> |
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| 269 | <font face="Arial,Helvetica"><font size=-1>Steele H.M., and Hamill P., |
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| 270 | "Effects of temperature and humidity on the growth and optical properties |
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| 271 | of sulphuric acid-water droplets in the stratosphere", |
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| 272 | <i>J.Aerosol Sci</i>., |
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| 273 | <b>12</b>, |
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| 274 | 517-528 (1981).</font></font></li> |
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| 275 | |
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| 276 | <li> |
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| 277 | <font face="Arial,Helvetica"><font size=-1>Steyer, T. R. "<i>Infrared optical |
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| 278 | properties of some solids of possible interest in astronomy and atmospheric |
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| 279 | physics</i>",Graduate Thesis, Department of Physics, University of Arizona |
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| 280 | (1974).</font></font></li> |
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| 281 | |
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| 282 | <li> |
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| 283 | <font face="Arial,Helvetica"><font size=-1>Sutherland, R.A., and R.K. Khanna, |
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| 284 | "Optical Properties of Organic­based Aerosols Produced by Burning Vegetation", |
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| 285 | <i>Aerosol |
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| 286 | Science and Technology</i><b>14</b>, 331­342 (1991).</font></font></li> |
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| 287 | |
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| 288 | <li> |
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| 289 | <font face="Arial,Helvetica"><font size=-1>Tampieri F., and C. Tomasi, |
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| 290 | "Size distribution models of fog and cloud droplets in terms of the modified |
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| 291 | gamma function", <i>Tellus</i>, <b>28</b>, 333-347 (1976).</font></font></li> |
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| 292 | |
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| 293 | <li> |
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| 294 | <font face="Arial,Helvetica"><font size=-1>Timmermans J., "The physico-chemical |
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| 295 | constants of binary systems in concentrated solutions", Interscience, New |
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| 296 | York, (1960).</font></font></li> |
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| 297 | |
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| 298 | <li> |
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| 299 | <font face="Arial,Helvetica"><font size=-1>Tisdale, R.T., D.L. Glandorf, |
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| 300 | M.A. Tolbert, and O.B. Toon, "Infrared optical constants of low temperature |
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| 301 | H<sub>2</sub>SO<sub>4</sub> solutions representative of stratospheric sulfate |
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| 302 | aerosols", <i>J.Geophys.Res</i>. <b>103</b>, 25353-25370 (1998).</font></font></li> |
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| 303 | |
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| 304 | <li> |
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| 305 | <font face="Arial,Helvetica"><font size=-1>Toon, O. B., Pollock, J. B. |
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| 306 | and Khare, B. N., "The optical constants of several atmospheric aerosols |
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| 307 | species: ammonium sulfate, aluminum oxide and sodium chloride", <i>J. Geophys. |
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| 308 | Res.</i>, <b>81</b>, 5733-5748 (1976).</font></font></li> |
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| 309 | |
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| 310 | <li> |
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| 311 | <font face="Arial,Helvetica"><font size=-1>Toon O.B., Tolbert M.A., Koehler |
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| 312 | B.C., Middlebrook A.M., and Jordan J., "The infrared optical constants |
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| 313 | of H<sub>2</sub>O-ice, amorphous nitric acid solutions, and nitric acid |
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| 314 | hydrates", <i>J. Geophys. Res</i>., <b>99</b>, 25631-25654 (1994)</font></font></li> |
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| 315 | |
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| 316 | <li> |
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| 317 | <font face="Arial,Helvetica"><font size=-1>Twitty, J. T. and Weinman, J. |
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| 318 | A., "Radiative properties of carbonaceous aerosols", <i>J. Appl. Meteor.</i>, |
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| 319 | <b>10</b>, |
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| 320 | 725-731 (1971).</font></font></li> |
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| 321 | |
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| 322 | <li> |
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| 323 | <font face="Arial,Helvetica"><font size=-1>Twomey S., <i>Atmospheric Aerosols</i> |
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| 324 | (Elsevier, New York, 1977)</font></font></li> |
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| 325 | |
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| 326 | <li> |
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| 327 | <font face="Arial,Helvetica"><font size=-1>Van de Hulst, H.C., <i>Light |
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| 328 | scattering by small particles</i>, 470 pp., New York : Dover Publications, |
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| 329 | 1981</font></font></li> |
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| 330 | |
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| 331 | <li> |
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| 332 | <font face="Arial,Helvetica"><font size=-1>Volz F.E., "Infrared refractive |
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| 333 | index of atmospheric aerosol substances", |
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| 334 | <i>Appl. Optics</i>, <b>11</b>, |
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| 335 | 755-759 (1972a).</font></font></li> |
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| 336 | |
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| 337 | <li> |
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| 338 | <font face="Arial,Helvetica"><font size=-1>Volz, F. E., "Infrared absorption |
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| 339 | by atmospheric aerosol substance", <i>J. Geophys. Res</i>., <b>77</b>, |
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| 340 | 1017-1031 (1972b).</font></font></li> |
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| 341 | |
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| 342 | <li> |
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| 343 | <font face="Arial,Helvetica"><font size=-1>Volz F.E., "Infrared optical |
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| 344 | constants of ammonium sulfate, Sahara dust; volcanic pumice and flyash", |
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| 345 | <i>Appl. |
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| 346 | Optics</i>., <b>12</b>, 564-568 (1973).</font></font></li> |
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| 347 | |
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| 348 | <li> |
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| 349 | <font face="Arial,Helvetica"><font size=-1>Ward G., et al., "Atmospheric |
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| 350 | aerosol index of refraction and size-altitude distribution from be-static |
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| 351 | laser scattering ans solar aerosol measurements", Appl. Opt., 12, 1285-2592 |
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| 352 | (1973).</font></font></li> |
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| 353 | |
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| 354 | <li> |
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| 355 | <font face="Arial,Helvetica"><font size=-1>Warren S.G., "Optical constants |
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| 356 | of ice from the ultraviolet to the microwave", |
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| 357 | <i>Appl.Opt</i>., |
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| 358 | <b>23</b>, |
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| 359 | 1206-1225 (1993).</font></font></li> |
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| 360 | |
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| 361 | <li> |
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| 362 | <font face="Arial,Helvetica"><font size=-1>World Meteorology Organization |
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| 363 | (WMO) publication: "<i>A preliminary cloudless standard atmosphere for |
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| 364 | radiation computation</i>", WCP-112, WMO/TD-NO. 24 (1986)</font></font></li> |
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| 365 | |
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| 366 | <li> |
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| 367 | <font face="Arial,Helvetica"><font size=-1>Zolatarev V.M., Morozov V.M., |
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| 368 | and E.V. Smirnova, "Optical constants of natural and technology media", |
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| 369 | 216 pp., Leningrad, 1984 (in Russian)</font></font></li> |
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| 370 | |
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| 371 | <li> |
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| 372 | <font face="Arial,Helvetica"><font size=-1>Norman, M. L., R. E. Miller, D. R. Worsnop, |
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| 373 | Ternary H2SO4.HNO3/H2O Optical Constants: New Measurements from Aerosol Spectroscopy under Stratospheric Conditions. |
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| 374 | J. Phys. Chem. A, vol 106, ppgs 6075-8040, 2002. |
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| 375 | </font></font></li> |
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| 376 | </ol> |
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| 377 | </td> |
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| 378 | </tr> |
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| 379 | </table></center> |
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| 380 | |
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| 381 | </body> |
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| 382 | </html> |
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