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Inherent optical properties of the coccolithophore: Emiliania huxleyiPeng-Wang Zhai, Yongxiang Hu, Charles R. Trepte, David M. Winker, Damien B. Josset, Patricia L. Lucker, and George W. Kattawar »View Author Affiliations
Peng-Wang Zhai,^{1,}^{*}
Yongxiang Hu,^{2}
Charles R. Trepte,^{2}
David M. Winker,^{2}
Damien B. Josset,^{1}
Patricia L. Lucker,^{1}
and George W. Kattawar^{3}
^{1}SSAI, MS 475 NASA Langley Research Center, Hampton, VA 23681-2199, USA ^{2}MS 475 NASA Langley Research Center, Hampton, VA 23681-2199, USA ^{3}Department of Physics and Astronomy, Texas A&M University, College Station, TX 77843-4242, USA ^{*}Corresponding author: Pengwang.zhai-1@nasa.gov |
Optics Express, Vol. 21, Issue 15, pp. 17625-17638 (2013)
http://dx.doi.org/10.1364/OE.21.017625
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Abstract
A realistic nonspherical model for Emiliania huxleyi (EHUX) is built, based on electron micrographs of coccolithophore cells. The Inherent Optical Properties (IOP) of the EHUX are then calculated numerically by using the discrete dipole approximation. The coccolithophore model includes a near-spherical core with the refractive index of 1.04 + m_{i}j, and a carbonate shell formed by smaller coccoliths with refractive index of 1.2 + m_{i}j, where m_{i} = 0 or 0.01 and j^{2} = −1. The reported IOP are the Mueller scattering matrix, backscattering probability, and depolarization ratio. Our calculation shows that the Mueller matrices of coccolithophores show different angular dependence from those of coccoliths.
© 2013 OSA
OCIS Codes
(010.4450) Atmospheric and oceanic optics : Oceanic optics
(290.1350) Scattering : Backscattering
(290.5850) Scattering : Scattering, particles
(290.7050) Scattering : Turbid media
(010.4458) Atmospheric and oceanic optics : Oceanic scattering
ToC Category:
Atmospheric and Oceanic Optics
History
Original Manuscript: May 17, 2013
Revised Manuscript: June 20, 2013
Manuscript Accepted: July 6, 2013
Published: July 16, 2013
Virtual Issues
Vol. 8, Iss. 8 Virtual Journal for Biomedical Optics
Citation
Peng-Wang Zhai, Yongxiang Hu, Charles R. Trepte, David M. Winker, Damien B. Josset, Patricia L. Lucker, and George W. Kattawar, "Inherent optical properties of the coccolithophore: Emiliania huxleyi," Opt. Express 21, 17625-17638 (2013)
http://www.opticsinfobase.org/vjbo/abstract.cfm?URI=oe-21-15-17625
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- A. Sadeghi, T. Dinter, M. Vountas, B. Taylor, M. Altenburg-Soppa, and A. Bracher, “Remote sensing of coccolithophore blooms in selected oceanic regions using the PhytoDOAS method applied to hyper-spectral satellite data,” Biogeoscience9, 2127–2143, (2012). [CrossRef]
- T. Dickey, M. L. Banner, P. Bhandari, T. Boyd, L. Carvalho, G. Chang, Y. Chao, H. Czerski, M. Darecki, C. Dong, D. Farmer, S. Freeman, J. Gemmrich, P. Gernez, N. Hall-Patch, B. Holt, S. Jiang, C. Jones, G. Kattawar, D. LeBel, L. Lenain, M. Lewis, Y. Liu, L. Logan, D. Manov, W. K. Melville, M. A. Moline, R. Morison, F. Nencioli, W. S. Pegau, B. Reineman, I. Robbins, R. Rttgers, H. Schultz, L. Shen, M. Shinki, M. Slivkoff, M. Soklski, F. Spada, N. Statom, D. Stramsk, P. Sutherland, M. Twardowski, S. Vagle, R. Van Dommelen, K. Voss, L. Washburn, J. Wei, H. Wijesekera, O. Wurl, D. Yang, S. Yildiz, Y. You, D. K. P. Yue, R. Zaneveld, and C. J. Zappa, “Introduction to special section on recent advances in the study of optical variability in the near-surface and upper ocean,”J. Geophys. Res.117, C00H20 (2012). [CrossRef]
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