On the sensitivity of heliosphere models to the uncertainty of the low-energy charge exchange cross section
arXiv:1911.09823 · doi:10.3847/1538-4357/ab595a
Abstract
Models play an important role in our understanding of the global structure of the solar wind and its interaction with the interstellar medium. A critical ingredient in many types of models are the charge-exchange collisions between ions and neutrals. Some ambiguity exists in the charge-exchange cross-section for protons and hydrogen atoms, depending on which experimental data is used. The differences are greatest at low energies, and for the plasma-neutral interaction in the outer heliosheath may exceed 50\%. In this paper we assess a number of existing data sets and formulae for proton-hydrogen charge-exchange. We use a global simulation of the heliosphere to quantify the differences between the currently favored cross-section, and a formulation we suggest that more closely matches the majority of available data. We find that in order to make the resulting two heliospheres the same size, the interstellar proton and hydrogen densities need to be adjusted by 10 to 15\%, which provides a way to link the uncertainty in the cross-section to the uncertainty in the parameters of the pristine interstellar plasma.
Accepted for The Astrophysical Journal
References in corpus (5)
- The effects of a kappa-distribution in the heliosheath on the global heliosphere and ENA flux at 1 AU
- Density of neutral interstellar hydrogen at the termination shock from Ulysses pickup ion observations
- Neutral interstellar He parameters in front of the heliosphere 1994--2007
- The helium Warm Breeze in IBEX observations as a result of charge exchange collisions in the outer heliosheath
- Magnetized jets driven by the sun: the structure of the heliosphere revisited
Cited by in corpus (4)
- Interstellar Conditions Deduced from Interstellar Neutral Helium Observed by IBEX and Global Heliosphere Modeling
- Interstellar Neutral Hydrogen in the Heliosphere: New Horizons Observations in the Context of Models
- Production and Loss Processes of Hydrogen Energetic Neutral Atoms in the Heliosphere from 5 eV to 500 keV
- Effects of angular scattering and H+p, H+H collisions on the properties of interstellar atoms in the heliosphere