Hostname: page-component-78c5997874-ndw9j Total loading time: 0 Render date: 2024-11-05T09:40:16.771Z Has data issue: false hasContentIssue false

On the Estimation of Atmospheric Aerosol Extinction Parameters from Measurements in the Johnson–Cousins Photometric System

Published online by Cambridge University Press:  02 January 2013

F. Sánchez-Bajo*
Affiliation:
Departamento de Física Aplicada, Escuela de Ingenierías Industriales, Universidad de Extremadura, Avda de Elvas s/n, 06006 Badajoz, Spain
D. Rodríguez-Estecha Álvarez
Affiliation:
Departamento de Física Aplicada, Escuela de Ingenierías Industriales, Universidad de Extremadura, Avda de Elvas s/n, 06006 Badajoz, Spain
*
BCorresponding author. Email: [email protected]
Rights & Permissions [Opens in a new window]

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

A procedure to estimate the aerosol extinction parameters of Angstrom's formula using data acquired with photometric broadband standard filters, the Johnson–Cousins filters, is presented. The method is based on the transformation of the heterochromatic magnitudes to the equivalent mean wavelength monochromatic magnitudes by an iterative approach, correcting subsequently the effects of water-vapour extinction in the longer-wavelength filters. As an example, the procedure has been used in the determination of the extinction parameters at the location of our observatory using the filters B, V, Rc and Ic on the night of 2008 August 28.

Type
Research Article
Copyright
Copyright © Astronomical Society of Australia 2012

References

Alnaser, W. E. & Awadalla, N. S., 1995, EM&P, 70, 61Google Scholar
Berry, R. & Burnell, J., 2007, AIP4Win: Astronomical Image Processing for Windows, version 2.2.0Google Scholar
Bessell, M. S., 1990, PASP, 102, 1181CrossRefGoogle Scholar
Brine, D. T. & Iqbal, M., 1983, SoEn, 30, 447Google Scholar
Budding, E., 1993, An Introduction to Astronomical Photometry (Cambridge: Cambridge University Press)Google Scholar
Burki, G., Rufener, F., Burnet, M., Richard, C., Blecha, A. & Bratschi, P., 1995, AASS, 112, 383Google Scholar
Cachorro, V. E., Utrillas, P., Vergaz, R., Durán, P., de Frutos, A. M. & Martínez-Lozano, J. A., 1998, ApOpt, 37, 4678Google Scholar
Chaiwiwatworakul, P. & Chirarattananon, S., 2004, Energy and Buildings, 36, 650CrossRefGoogle Scholar
Cox, A. N. (ed.), 2000, Allen's Astrophysical Quantities (4th ed.; New York: Springer-Verlag)Google Scholar
de La Casinière, A., Bokoye, A. I. & Cabot, T., 1997, JApMe, 36, 509Google Scholar
Forbes, M. C., Dodd, R. J. & Sullivan, D. J., 1996, BaltA, 5, 281Google Scholar
Golay, M., 1974, Introduction to Astronomical Photometry (Boston: Dordrecht-Holland)CrossRefGoogle Scholar
Gueymard, C. A., 1998, JApMe, 37, 414Google Scholar
Gueymard, C. A., 2001, SoEn, 71, 325Google Scholar
Gutiérrez-Moreno, A., Moreno, H. & Cortés, G., 1982, PASP, 94, 722CrossRefGoogle Scholar
Halthore, R. N., Eck, T. F., Holben, B. N. & Markham, B. L., 1997, JGR, 102, 4343CrossRefGoogle Scholar
Hayes, D. S. & Latham, D. W., 1975, ApJ, 197, 593CrossRefGoogle Scholar
Iqbal, M., 1983, An Introduction to Solar Radiation (New York: Academic Press, Inc.)Google Scholar
Jurado Vargas, M., Merchán Benítez, P. & Sánchez Bajo, F., 2000, EJPh, 21, 245Google Scholar
Kaskaoutis, D. G. & Kambezidis, H. D., 2006, AtmRe, 79, 67Google Scholar
King, I., 1952, AJ, 57, 253CrossRefGoogle Scholar
King, M. D. & Byrne, D. M., 1976, JAtS, 33, 2242Google Scholar
Kumar, B., Sagar, R., Rautela, B. S., Srivastava, J. B. & Srivastava, R. K., 2000, BASI, 28, 675Google Scholar
Leckner, B., 1978, SoEn, 20, 143Google Scholar
Lombardi, G., Zitelli, V., Ortolani, S., Pedani, M. & Ghedina, A., 2008, A&A, 483, 651Google Scholar
Mecherikunnel, A. T., Gatlin, J. A. & Richmond, J. C., 1983, ApOpt, 22, 1354Google Scholar
Mohan, V., Uddin, W., Sagar, R. & Gupta, S. K., 1999, BASI, 27, 601Google Scholar
Pakstiene, E., 2001, BaltA, 10, 651Google Scholar
Reimann, H. G., Ossenkopf, V. & Beyersdorfer, S., 1992, A&A, 265, 360Google Scholar
Rufener, F., 1986, A&A, 165, 275Google Scholar
Schuster, W. J. & Parrao, L., 2001, RMxAA, 37, 187Google Scholar
Stalin, C. S, Hegde, M., Sahu, D. K., Parihar, P. S., Anupama, G. C., Bhatt, B. C. & Prabhu, T. P., 2008, BASI, 36, 111Google Scholar
Sterken, C. & Manfroid, J., 1992, A&A, 266, 619Google Scholar
Strömgren, B., 1937, Handbuch der Experimentalphysik, Band 26, Astrophysik (Leipzig: Akademische Verlagsgesellschaft)Google Scholar
Van de Hulst, H. C., 1981, Light Scattering by Small Particles (New York: Dover)Google Scholar
Vigroux, E., 1953, AnPhy, 8, 709Google Scholar
Young, A. T., 1992, A&A, 257, 366Google Scholar
Zdanavicius, K., 1996, BaltA, 5, 549Google Scholar