Neon Insights from Old Solar X-rays: a Plasma Temperature Dependence of the Coronal Neon Content
arXiv:1109.3661 · doi:10.1088/0004-637X/743/1/22
Abstract
An analysis using modern atomic data of fluxes culled from the literature for O VIII and Ne IX lines observed in solar active regions by the P78 and Solar Maximum Mission satellites confirms that the coronal Ne/O abundance ratio varies by a factor of two or more, and finds an increase in Ne/O with increasing active region plasma temperature. The latter is reminiscent of evidence for increasing Ne/O with stellar activity in low-activity coronae that reaches a "neon saturation" in moderately active stars at approximately twice the historically accepted solar value of about 0.15 by number. We argue that neon saturation represents the underlying stellar photospheric compositions, and that low activity coronae, including that of the Sun, are generally depleted in neon. The implication would be that the solar Ne/O abundance ratio should be revised upward by a factor of about two to n(Ne)/n(O)~0.3. Diverse observations of neon in the local cosmos provide some support for such a revision. Neon would still be of some relevance for reconciling helioseismology with solar models computed using recently advocated chemical mixtures with lower metal content.
To appear in the Astrophysical Journal
References in corpus (11)
- Neon Abundances in B-Stars of the Orion Association: Solving the Solar Model Problem?
- Planetary Nebula Abundances and Morphology: Probing the Chemical Evolution of the Milky Way
- Planetary nebulae abundances and stellar evolution
- The neon content of nearby B-type stars and its implications for the solar model problem
- Seismic study of the chemical composition of the solar convection zone
- Argon Abundances in the Solar Neighborhood: Non-LTE Analysis of Orion Association B-type Stars
- Neon and oxygen in low activity stars: towards a coronal unification with the Sun
- Improving the Calibration of Type Ia Supernovae Using Late-time Lightcurves
- Chemical abundances in the protoplanetary disk LV2 (Orion) - II: High dispersion VLT observations and microjet properties
- The Detectability of Neon Fluorescence and Measurement of the Solar Photospheric Neon Abundance
- Neon and Chemical Fractionation Trends in Late-type Stellar Atmospheres