Open Access
Issue |
EPJ Web of Conferences
Volume 119, 2016
The 27th International Laser Radar Conference (ILRC 27)
|
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Article Number | 23031 | |
Number of page(s) | 4 | |
Section | Poster Session (Aerosol Observations and Retrievals II) | |
DOI | https://doi.org/10.1051/epjconf/201611923031 | |
Published online | 07 June 2016 |
- Dinoev, T., 2009: Automated Raman lidar for day and night operational observation of tropospheric water vapor for meteorological applications (Doctoral dissertation, ÉCOLE POLYTECHNIQUE FÉDÉRALE DE LAUSANNE). [Google Scholar]
- Althausen, D., Engelmann, R., Baars, H., Heese, B., Ansmann, A., Müller, D., & Komppula, M., 2009: Portable Raman lidar PollyXT for automated profiling of aerosol backscatter, extinction, and depolarization, Journal of Atmospheric and Oceanic Technology, 26(11), 2366-2378. [Google Scholar]
- Forster, P., and Coauthors, 2007: Changes in atmospheric constituents and in radiative forcing, Climate Change 2007: The Physical Science Basis, S. Solomon et al., Eds., Cambridge University Press, 129–234. [Google Scholar]
- Bruneau, D., Quaglia, P., Flamant, C., Meissonnier, M., & Pelon, J., 2001: Airborne lidar LEANDRE II for water-vapor profiling in the troposphere. I. System description, Applied optics, 40(21), 3450-3461. [Google Scholar]
- Melfi, S. H., Lawrence Jr, J. D., & McCormick, M. P., 1969: Observation of Raman scattering by water vapor in the atmosphere, Applied Physics Letters, 15(9), 295-297. [Google Scholar]
- Cooney, J., 1970: Remote measurements of atmospheric water vapor profiles using the Raman component of laser backscatter, Journal of Applied Meteorology, 9(1), 182-184. [Google Scholar]
- Sassen, K., 2005: Polarization in lidar, Springer New York, 19-42. [Google Scholar]
- Ansmann, A., Tesche, M., Althausen, D., Müller, D., Seifert, P., Freudenthaler, V., & Dubovik, O., 2008: Influence of Saharan dust on cloud glaciation in southern Morocco during the Saharan Mineral Dust Experiment, Journal of Geophysical Research: Atmospheres (1984–2012), 113(D4). [Google Scholar]
- Freudenthaler, V., Homburg, F., & Jäger, H., 1996: Optical parameters of contrails from lidar measurements: linear depolarization, Geophysical research letters, 23(25), 3715-3718. [CrossRef] [Google Scholar]
- Sassen, K., Zhu, J., Webley, P., Dean, K., & Cobb, P., 2007: Volcanic ash plume identification using polarization lidar: Augustine eruption, Alaska, Geophysical Research Letters, 34(8). [Google Scholar]
- Cairo, F., Di Donfrancesco, G., Adriani, A., Pulvirenti, L., & Fierli, F., 1999: Comparison of various linear depolarization parameters measured by lidar, Applied Optics, 38(21), 4425-4432. [Google Scholar]
- Murayama, T., Müller, D., Wada, K., Shimizu, A., Sekiguchi, M., & Tsukamoto, T., 2004: Characterization of Asian dust and Siberian smoke with multi-wavelength Raman lidar over Tokyo, Japan in spring 2003.Geophysical Research Letters, 31(23). [Google Scholar]
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