167
Views
4
CrossRef citations to date
0
Altmetric
Original Articles

Infrared Extinction Properties of Nanostructured and Conventional Particles

&
Pages 103-118 | Published online: 06 Mar 2012

References

  • Appleyard , P. G. 2006 . Infrared extinction performance of high aspect ratio carbon nanoparticles . Journal of Optics A 8 : 101 – 113 .
  • Appleyard , P. G. 2007. Modelled infrared extinction and attenuation performance of atmospherically disseminated high aspect ratio metal nanoparticles. Journal of Optics A 9: 278–300.
  • Appleyard , P. G. and N. Davies . 2004a . Calculation and measurement of infrared mass extinction coefficients of selected ionic and partially ionic insulators and semiconductors: A guide for infrared obscuration applications . Optical Engineering 43 : 376 – 386 .
  • Appleyard , P. G. and N. Davies . 2004b . Modelling infrared extinction of high aspect ratio, highly conducting small particles . Journal of Optics A 6 : 977 – 990 .
  • ASTM Standards . 2006 . B 527-93: Standard test method for determination of tap density of metallic powders and compounds . Philadelphia , PA : ASTM .
  • Bailey , R. A. , H. M. Clark , S. Krause , J. P. Ferris , and R. L. Strong . 2002 . Chemistry of the environment , (2nd ed.) . New York , NY : Elsevier .
  • Butler , B. A. 1998 . Smoke and obscurant operations in adjoint environments . Unpublished Thesis. Maxwell Air Force Base, AL .
  • Colbeck , I. , B. Atkinson , and Y. Johar . 1997 . The morphology and optical properties of soot produced by different fuels . Journal of Aerosol Science 28 : 715 – 723 .
  • Dobbins , R. A. , G. W. Mulholland , and N. P. Bryner . 1994 . Comparison of a fractal smoke optics model with light extinction measurements . Atmospheric Environment 28 : 889 – 897 .
  • Farmer , W. M. 1991 . Prediction of broad-band attenuation computed using band-averaged mass extinction coefficients and band-averaged transmittance . Optical Engineering 30 : 1255 – 1261 .
  • Farmer , W. M. , and K. L. Krist . 1981 . Comparison of methods used to determine the mass extinction coefficient for phosphorous smokes . Proceedings of the Society of Photo-Optical Instrumentation Engineers 305 : 7 – 16 .
  • Farmer , W. M. , F. A. Schwartz , R. D. Morris , M. A. Binkley , and L. M. Boyd . 1982 . Optical characteristics at 3.4-µm wavelength of munition-produced phosphorus smoke as a function of relative humidity . Aerosol Science & Technology 1 : 409 – 425 .
  • Haley , M. V. , and C. W. Kurnas . 1993 . Toxicity and fate comparison between several brass and titanium oxide powders. ERDEC-TR-094 . Edgewood , MD : Edgewood Research and Development and Engineering Center .
  • Hutchison , K. D. , and A. P. Cracknell . 2005 . Visible infrared imager radiometer suite: A new operational cloud imager . New York : Taylor & Francis .
  • Jacobson , M. Z. 1999 . Fundamentals of atmospheric modeling . Cambridge , UK : Cambridge University Press .
  • Ladouceur , H. D. , A. P. Baronavski , and H. H. Nelson . 1997 . Obscurants for infrared countermeasures . Washington , DC : Naval Research Lab .
  • Milham , M. 1976 . A catalog of optical extinction data for various aerosols/smokes. ED-8P-770022–85 . Edgewood , MD : Edgewood Arsenal, Aberdeen Proving Ground .
  • Owrutsky , J. C. , H. H. Nelson , H. D. Ladouceur , and A. P. Baronavski . 2000 . Obscurants for infrared countermeasures II . Washington , DC : Naval Research Lab .
  • Owrutsky , J. C. , D. A. Steinhurst , H. D. Ladouceur , H. H. Nelson , and A. P. Baronavski . 2001 . Obscurants for infrared countermeasures III . Washington , DC : Naval Research Lab .
  • Shi , J. M. , L. L. Chen , Y. S. Ling , and Y. Lu . 1998 . Infrared extinction of artificial aerosols and the effects of size distributions . Journal of Infrared, Millimeter, and Terahertz Waves 19 : 1671 – 1679 .
  • Shi , J. M. , J. Y. Wang , B. Xu , J. C. Wang , and Z. C. Yuan . 2003 . Calculation and optimization of the effective extinction cross section of the spherical cold obscuring smoke . Journal of Infrared, Millimeter, and Terahertz Waves 24 : 2007 – 2013 .
  • Singh , A. , S. G. Avachat , and H. Singh . 1994 . Infrared screening smokes—A review . Journal of Scientific and Industrial Research 53 : 667 – 673 .
  • Smith , B. C. 1996 . Fundamentals of Fourier transform infrared spectroscopy . Baton Roca , FL : CRC Press .
  • Stuart , B. 2004 . Infrared spectroscopy: Fundamentals and applications . Chichester , UK : John Wiley and Sons .
  • Thermo Electron Corporation. 2006. Nicolet FT-IR user's guide . Madison , WI.
  • Wang , J. Y. , J. M. Shi , B. Xu , J. C. Wang , and Z. C. Yuan . 2004 . Calculation of overall effective extinction cross section of several cold smoke infrared ammunitions . Defense Science Journal 54 : 329 – 334 .
  • Wetmore , A. , and S. D. Ayres . 2000 . Combined obscuration model for battlefield induced contaminants. ARL-TR-1831–2 . Vol. 2 , Adelphi , MD : Army Research Laboratory .
  • Widmann , J. F. , J. C. Yang , T. J. Smith , S. L. Manzello , and G. W. Mulholland . 2004 . Measurement of the optical extinction coefficients of post-flame soot in the infrared . Combustion and Flame 134 : 119 – 129 .
  • Vlasenko , A. , S. Sjogren , E. Weingartner , H. W. Gaggeler , and M. Ammann . 2005 . Generation of submicron arizona dust aerosol: Chemical and hygroscopic properties . Aerosol Science & Technology 39 : 452 – 460 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.