The isotopic composition of solar energetic particles (SEPs) has been measured using the Solar Isotope Spectrometer on the Advanced Composition Explorer. The measurements include up to 12 isotope abundance ratios for ten elements from C through Ni at energies of tens of MeV/nucleon in 18 large SEP events that have occurred since November 1997. These measurements clearly establish that SEP isotopic composition can vary widely (by factors of >3) from event to event, presumably due to mass fractionation processes during particle acceleration and/or transport. Elemental and isotopic abundance ratios are strongly correlated, suggesting that elemental and isotopic fractionation relative to the coronal source are largely governed by the same proce...
Coronal isotopic abundances for the elements He, C, N, 0, Ne, and Mg are derived from previously pu...
Using data from the Solar Isotope Spectrometer (SIS) on the Advanced Composition Explorer (ACE) miss...
Coronal isotopic abundances for the elements He, C, N, 0, Ne, and Mg are derived from previously pu...
The isotopic composition of solar energetic particles (SEPs) has been measured using the Solar Isoto...
Solar energetic particles (SEPs), like the solar wind, provide a direct sample of the Sun. Although ...
Solar energetic particles (SEPs), like the solar wind, provide a direct sample of the Sun. Although ...
Using the Solar Isotope Spectrometer (SIS) on the Advanced Composition Explorer (ACE), we have meas...
Using the Solar Isotope Spectrometer on the Advanced Composition Explorer, the isotopic composition...
Using the Solar Isotope Spectrometer on the Advanced Composition Explorer, we have measured the isot...
Solar energetic particles (SEPs) provide a sample of the Sun from which solar composition may be det...
Solar energetic particles (SEPs) provide a sample of the Sun from which solar composition may be det...
Solar energetic particles (SEPs) provide a sample of the Sun from which solar composition may be det...
Although solar energetic particle (SEP) abundances vary from event to event, it has been shown that ...
Although solar energetic particle (SEP) abundances vary from event to event, it has been shown that ...
Although solar energetic particle (SEP) abundances vary from event to event, it has been shown that ...
Coronal isotopic abundances for the elements He, C, N, 0, Ne, and Mg are derived from previously pu...
Using data from the Solar Isotope Spectrometer (SIS) on the Advanced Composition Explorer (ACE) miss...
Coronal isotopic abundances for the elements He, C, N, 0, Ne, and Mg are derived from previously pu...
The isotopic composition of solar energetic particles (SEPs) has been measured using the Solar Isoto...
Solar energetic particles (SEPs), like the solar wind, provide a direct sample of the Sun. Although ...
Solar energetic particles (SEPs), like the solar wind, provide a direct sample of the Sun. Although ...
Using the Solar Isotope Spectrometer (SIS) on the Advanced Composition Explorer (ACE), we have meas...
Using the Solar Isotope Spectrometer on the Advanced Composition Explorer, the isotopic composition...
Using the Solar Isotope Spectrometer on the Advanced Composition Explorer, we have measured the isot...
Solar energetic particles (SEPs) provide a sample of the Sun from which solar composition may be det...
Solar energetic particles (SEPs) provide a sample of the Sun from which solar composition may be det...
Solar energetic particles (SEPs) provide a sample of the Sun from which solar composition may be det...
Although solar energetic particle (SEP) abundances vary from event to event, it has been shown that ...
Although solar energetic particle (SEP) abundances vary from event to event, it has been shown that ...
Although solar energetic particle (SEP) abundances vary from event to event, it has been shown that ...
Coronal isotopic abundances for the elements He, C, N, 0, Ne, and Mg are derived from previously pu...
Using data from the Solar Isotope Spectrometer (SIS) on the Advanced Composition Explorer (ACE) miss...
Coronal isotopic abundances for the elements He, C, N, 0, Ne, and Mg are derived from previously pu...