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Detailed Reference Information |
Kucharek, H., Ipavich, F.M., Kallenbach, R., Bochsler, P., Hovestadt, D., Grünwaldt, H., Hilchenbach, M., Axford, W.I., Balsiger, H., Bürgi, A., Coplan, M.A., Galvin, A.B., Geiss, J., Gliem, F., Gloeckler, G., Hsieh, K.C., Judge, D.J., Klecker, B., Lee, M.A., Livi, S., Managadze, G.G., Marsch, E., Möbius, E., Neugebauer, M., Ogawa, H.S., Reiche, K.-U., Scholer, M., Verigin, M.I., Wilken, B. and Wurz, P. (1998). Magnesium isotopic composition as observed with the CELIAS/MTOF experiment on the SOHO spacecraft. Journal of Geophysical Research 103: doi: 10.1029/98JA02542. issn: 0148-0227. |
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Solar wind abundance ratios of magnesium isotopes measured with the high resolution Mass Time-of-Flight spectrometer (MTOF) of the Charge, Element, and Isotope Analysis System (CELIAS) experiment on board the Solar and Heliospheric Observatory (SOHO) are presented. MTOF, as part of CELIAS, is, because of its high time and mass resolution, an excellent tool for isotope abundance measurements in the solar wind. From the data analysis we have found that the isotopic composition of magnesium in the solar wind agrees with the terrestrial composition within the experimental uncertainty. We have obtained isotopic ratios of 24Mg/25Mg=7.7¿0.4 and 24Mg/26Mg=7.0¿0.5. These values are consistent with the terrestrial values of 24Mg/25Mg=7.90¿0.01 and 24Mg/26Mg=7.17¿0.03. Furthermore, these investigations also show that with the given uncertainties the abundance ratios do not vary significantly within a solar wind velocity range from 375 km/s to 530 km/s. ¿ 1998 American Geophysical Union |
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Abstract |
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Keywords
Interplanetary Physics, Solar wind plasma, Interplanetary Physics, Sources of the solar wind |
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Publisher
American Geophysical Union 2000 Florida Avenue N.W. Washington, D.C. 20009-1277 USA 1-202-462-6900 1-202-328-0566 service@agu.org |
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