Articles | Volume 5, issue 6
https://doi.org/10.5194/amt-5-1205-2012
https://doi.org/10.5194/amt-5-1205-2012
Research article
 | 
01 Jun 2012
Research article |  | 01 Jun 2012

MIPAS-STR measurements in the Arctic UTLS in winter/spring 2010: instrument characterization, retrieval and validation

W. Woiwode, H. Oelhaf, T. Gulde, C. Piesch, G. Maucher, A. Ebersoldt, C. Keim, M. Höpfner, S. Khaykin, F. Ravegnani, A. E. Ulanovsky, C. M. Volk, E. Hösen, A. Dörnbrack, J. Ungermann, C. Kalicinsky, and J. Orphal

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Cited articles

Andreae, M. O. and Crutzen, P. J.: Atmospheric Aerosols: Biogeochemical Sources and Role in Atmospheric Chemistry, Science, 276, 1052–1058, 1997.
Arnold, F. and Bührke, Th.: New H2SO4 and HSO3 vapour measurements in the stratosphere – evidence for a volcanic influence, Nature, 301, 293–295, 1983.
Blom, C. E., Gulde, T., Keim, C., Kimmig, W., Piesch, C., Sartorius, C., and Fischer, H.: MIPAS-STR: Entwicklung eines Instruments für Stratosphärenflugzeuge, Statusseminar des Ozonforschungsprogramms, 1998.
Blom, C. E., Camy-Peyret, C., Catoire, V., Chance, K., Oelhaf, H., Ovarlez, J., Payan, S., Pirre, M., Piesch, C., and Wetzel, G: Validation of MIPAS temperature profiles by stratospheric balloon and aircraft measurements, Proc. ACVE-2 meeting, 3–7 May 2004, Frascati, Italy, 2004.
Boone, C. D., Walker, K. A., and Bernath, P. F.: Speed-dependent Voigt profile for water vapor in infrared remote-sensing applications, J. Quant. Spectrosc. Ra., 105, 525–532, https://doi.org/10.1016/j.jqsrt.2006.11.015, 2007.
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