Автор |
Skinner, T. E. |
Автор |
DeLand, M. T. |
Автор |
Ballester, G. E. |
Автор |
Coplin, K. A. |
Автор |
Feldman, P. D. |
Автор |
Moos, H. W. |
Дата выпуска |
1988 |
dc.description |
Observations monitoring the long‐term spatial and temporal behavior of the Jovian H I Ly α emission have been made with the International Ultraviolet Explorer (IUE) observatory beginning in December 1978, and extending through December 1986. The hydrogen bulge region centered near λ<sub>III</sub> = 100° has been observed to be a persistent feature of the Jovian upper atmosphere throughout the period of the observations, which includes the maximum of solar cycle 21 and the current minimum in solar activity. New and previously unpublished measurements made since early 1982 show that the average brightness of both the bulge and nonbulge regions has varied with the long‐term solar Ly α output, which has decreased by a factor of ∼ 2 in this time frame. However, the bulge is ∼ 25% brighter on average and exhibits more short‐term variability than the nonbulge region. The factor of ∼ 2 change in Jupiter's Ly α brightness during the descending phase of solar cycle 21 is significantly less than the order of magnitude variability reported for the ascending phase of the same cycle. The IUE results are consistent with pure resonant scattering from an H column of ∼10<sup>17</sup> cm<sup>−2</sup> and indicate that no observable changes have taken place in the Jovian atomic hydrogen abundance or the average atmospheric conditions during the 8‐year period since December 1978. If the electroglow process recently proposed for the outer planets plays a significant role in the long‐term behavior of the Jovian Ly α emission, the electroglow must also follow the solar cycle at Ly α. Finally, as a result of revisions in both the IUE instrumental sensitivity at Ly α and the dimensions of the spectrograph large aperture, there is no significant difference between Voyager and IUE measurements of the Jovian Ly α brightness made within the same time frame and with approximately the same field of view. |
Формат |
application.pdf |
Копирайт |
Copyright 1988 by the American Geophysical Union. |
Тема |
ATMOSPHERIC COMPOSITION AND STRUCTURE |
Тема |
Airglow and aurora |
Тема |
HISTORY OF GEOPHYSICS |
Тема |
History of Geophysics: Solar‐planetary relationships |
Тема |
SOLAR PHYSICS, ASTROPHYSICS, AND ASTRONOMY |
Тема |
Ultraviolet emissions |
Название |
Temporal variation of the Jovian H I Lyman alpha emission (1979–1986) |
Тип |
article |
DOI |
10.1029/JA093iA01p00029 |
Electronic ISSN |
2156-2202 |
Print ISSN |
0148-0227 |
Журнал |
Journal of Geophysical Research: Space Physics |
Том |
93 |
Первая страница |
29 |
Последняя страница |
34 |
Выпуск |
A1 |
Библиографическая ссылка |
Ackerman, M., P. C.Simon, Rocket measurement of solar fluxes at 1216 Å, 1450 Å, and 1710 Å, Sol. Phys., 30, 345, 1973. |
Библиографическая ссылка |
Bohlin, R. C., C. J.Grillmair, The ultraviolet calibration of the Hubble Space Telescope, II, A correction for the change in sensitivity of the SWP camera on IUE, Astrophys. J. Suppl., 1988. |
Библиографическая ссылка |
Bohlin, R. C., A. V.Holm, B. D.Savage, M. A. J.Snijders, W. M.Sparks, Photometric calibration of the International Ultraviolet Explorer (IUE): Low dispersion, Astron. Astrophys., 85, 1, 1980. |
Библиографическая ссылка |
Bossy, L., M.Nicolet, On the variability of Lyman‐alpha with solar activity, Planet. Space Sci., 29, 907, 1981. |
Библиографическая ссылка |
Broadfoot, A. L., B. R.Sandel, D. E.Shemansky, J. C.McConnell, G. R.Smith, J. B.Holberg, S. K.Atreya, T. M.Donahue, D. F.Strobel, J.‐L.Bertaux, Overview of the Voyager ultraviolet spectrometry results through Jupiter encounter, J. Geophys. Res., 86, 8259, 1981. |
Библиографическая ссылка |
Broadfoot, A. L., F.Herbert, J. B.Holberg, D. M.Hunten, S.Kumar, B. R.Sandel, D. E.Shemansky, G. R.Smith, R. V.Yelle, D. F.Strobel, H. W.Moos, T. M.Donahue, S. K.Atreya, J.‐L.Bertaux, J. E.Blamont, J. C.McConnell, A. J.Dessler, S.Linick, R.Springer, Ultraviolet spectrometer observations of Uranus, Science, 233, 74, 1986. |
Библиографическая ссылка |
BrunerJr., E. C., The Solar Output and its VariationO. R.White, 219, Colorado Associated University Press, Boulder, Colo., 1977. |
Библиографическая ссылка |
Carlson, R. W., D. L.Judge, Pioneer 10 ultraviolet photometer observations at Jupiter encounter, J. Geophys. Res., 79, 3623, 1974. |
Библиографическая ссылка |
Clarke, J. T., H. A.Weaver, P. D.Feldman, H. W.Moos, W. G.Fastie, C. B.Opal, Spatial imaging of hydrogen Lyman α emission from Jupiter, Astrophys. J., 240, 696, 1980. |
Библиографическая ссылка |
Clarke, J. T., H. W.Moos, P. D.Feldman, IUE monitoring of the spatial distribution of the H Ly α emission from Jupter, Astrophys. J., 245, L127, 1981. |
Библиографическая ссылка |
Cook, J. W., G. E.Brueckner, M. E.Van Hoosier, Variability of the solar flux in the far ultraviolet 1175–2100 Å, J. Geophys. Res., 85, 2257, 1980. |
Библиографическая ссылка |
DeLand, M. T., Solar ultraviolet flux and ultraviolet emissions from Jupiter, Masters thesis, 48 pp.,Johns Hopkins Univ.,Baltimore, Md.,1985. |
Библиографическая ссылка |
Donnelly, R. F., H. E.Hinteregger, D. F.Heath, Temporal variations of solar EUV, UV, and 10,830‐Å radiations, J. Geophys. Res., 91, 5567, 1986. |
Библиографическая ссылка |
Giles, J. W., H. W.Moos, W. R.McKinney, The far ultraviolet (1200–1900 Å] spectrum of Jupiter obtained with a rocketborne multichannel spectrometer, J. Geophys. Res., 81, 5797, 1976. |
Библиографическая ссылка |
Gladstone, G. R., Radiative transfer and photochemistry in the upper atmosphere of Jupiter, Ph.D. thesis, 155 pp.,Calif. Inst. of Technol.,Pasadena,1983. |
Библиографическая ссылка |
Harvey, J. W., Helium 10830‐Å irradiances: 1975–1983, Solar radiance Variations on Active Region Time ScalesB. J.Labonte, G. A.Chapman, H. S.Hudson, R. C.Willson, NASA Conf. Publ., CP‐2310, 197–211, 1984. |
Библиографическая ссылка |
Heroux, L., J. E.Higgins, Summary of full‐disc solar flares between 250 and 1940 Å, J. Geophys. Res., 82, 3307, 1977. |
Библиографическая ссылка |
Hinteregger, H. E., K.Fukui, B. R.Gilson, Observational, reference, and model data on solar EUV, from measurements on AE‐E, Geophys. Res. Lett., 8, 1147, 1981. |
Библиографическая ссылка |
Holm, A., R. C.Bohlin, A.Cassatella, D. P.Ponz, F. H.Schiffer, On the linearity of the SWP camera of the International Ultraviolet Explorer (IUE): A correction algorithm, Astron. Astrophys., 112, 341, 1982. |
Библиографическая ссылка |
Lean, J. L., Solar ultraviolet irradiance variations: A review, J. Geophys. Res., 92, 839, 1987. |
Библиографическая ссылка |
Moos, H. W., W. G.Fastie, M.Bottema, Rocket measurement of ultraviolet spectra of Venus and Jupiter between 1200 and 1800 Å, Astrophys. J., 155, 887, 1969. |
Библиографическая ссылка |
Mount, G. H., G. J.Rottman, The solar spectral irradiance 1200–3184 Å near solar maximum: July 15, 1980, J. Geophys. Res., 86, 9193, 1981. |
Библиографическая ссылка |
Mount, G. H., G. J.Rottman, The solar absolute spectral irradiance at 1216 Å and 1800–3173 Å: January 12, 1983, J. Geophys. Res., 88, 5403, 1983. |
Библиографическая ссылка |
Prinz, D. K., The spatial distribution of Lyman‐α on the sun, Astrophys. J., 187, 369, 1974. |
Библиографическая ссылка |
Rottman, G. J., J.London, Solar UV irradiance observations of 27‐day variations and evidence for solar cycle variations, IRS 84: Current Problems in Atmospheric Radiation, Proceedings of the International Radiation Symposium, Perugia, ItalyG.Fiocco, 320–324A. Deepak, Hampton, Va., 1984. |
Библиографическая ссылка |
Sandel, B. R., A. L.Broadfoot, D. F.Strobel, Discovery of a longitudinal asymmetry in the H Lyman‐alpha brightness of Jupiter, Geophys. Res. Lett., 7, 5, 1980. |
Библиографическая ссылка |
Shemansky, D. E., An explanation for the H Ly α longitudinal asymmetry in the equatorial spectrum of Jupiter: An outcrop of paradoxical energy deposition in the exosphere, J. Geophys. Res., 90, 2673, 1985. |
Библиографическая ссылка |
Shemansky, D. E., J. M.Ajello, The Saturn spectrum in the EUV‐electron excited hydrogen, J. Geophys. Res., 88, 459, 1983. |
Библиографическая ссылка |
Shemansky, D. E., D. L.Judge, Evidence for change in particle excitation of Jupiter's atmosphere 1968–1979, J. Geophys. Res., 1987. |
Библиографическая ссылка |
Skinner, T. E., H. W.Moos, Comparison of the Jovian north and south pole aurorae using the IUE observatory, Geophys. Res. Lett., 11, 1107, 1984. |
Библиографическая ссылка |
Skinner, T. E., S. T.Durrance, P. D.Feldman, H. W.Moos, Temporal variation of the H I Lyman‐alpha emission (1979–1982, Astrophys. J. Lett., 265, L23, 1983. |
Библиографическая ссылка |
Sonneborn, G., M. P.Garhart, Low‐dispersion quick‐look sensitivity monitoring, XI, IUE Newsl., 31, 29, 1986. |
Библиографическая ссылка |
Turnrose, B. E., R. W.Thompson, D. F.Stone, P. M.Perry, International Ultraviolet Explorer Image Processing Information Manual: Version 2.0CSC/TM‐84/6058Computer Sciences Corporation, Silver Spring, Md., 1984. |
Библиографическая ссылка |
Vernazza, J. E., E. H.Avrett, R.Loeser, Structure of the solar chromosphere, III, Models of the EUV brightness components of the quiet sun, Astrophys. J. Suppl., 45, 635, 1981. |
Библиографическая ссылка |
Vidal‐Madjar, A., Evolution of the solar Lyman alpha flux during four consecutive years, Sol. Phys., 40, 69, 1975. |
Библиографическая ссылка |
Vidal‐Madjar, A., B.Phissamay, The solar Ly α flux near solar minimum, Sol. Phys., 66, 259, 1980. |
Библиографическая ссылка |
Yung, Y. L., D. F.Strobel, Hydrocarbon chemistry and Lyman alpha albedo of Jupiter, Astrophys. J., 239, 395, 1980. |