The Interstellar H Flow: Updated Analysis of SOHO/SWAN Data
arXiv:1405.3474 · doi:10.1063/1.3395925
Abstract
We update two kinds of results obtained with the SWAN instrument on board SOHO. First, we use H cell data recorded in 2001 and derive the H flow direction in the same way we performed the study at solar minimum. We compare with the Helium flow and doing so we correct for the coordinate system change between the Ulysses and SOHO mission. The deflection plane we obtain is compatible with the previous result within error bars, confirming the predominant role of the interstellar magnetic field. Secondly, we extend the derivation of solar wind ionization temporal evolution as a function of heliolatitude. The pattern for the present solar minimum is strikingly different from the previous minimum, with a much wider slow solar wind equatorial belt which persists until at least 2008. Comparing with synoptic LASCO/C2 electron densities we infer from a preliminary study that the acceleration of the high speed solar wind occurs at a higher altitude during this minimum, a change expansion models should be able to explain.
4 pages, Twelfth International Solar Wind Conference, 21-26 June 2009, Saint-Malo, France
Cited by in corpus (6)
- Uranus' aurorae past equinox
- Stability of the interstellar hydrogen inflow longitude from 20 years of SOHO/SWAN observations
- Voyager 1/UVS Lyman measurements at the distant heliosphere (90-130AU): unknown source of additional emission
- Backscattered solar Lyman-alpha emission as a tool for the heliospheric boundary exploration
- The strong effect of electron thermal conduction on the global structure of the heliosphere
- On the Stability of the Interstellar Wind through the Solar System