WawHelioGlow: a model of the heliospheric backscatter glow. II. The helioglow buildup and the potential significance of the anisotropy in the solar EUV output
arXiv:2103.02802 · doi:10.3847/1538-4365/abeb78
Abstract
The helioglow is a fluorescence of interstellar atoms inside the heliosphere, where they are excited by the solar EUV. Because the mean free path between collisions for the interstellar gas is comparable to the size of the heliosphere, the distribution function of this gas inside the heliosphere strongly varies in space and with time and is non-Maxwellian. Coupling between realistically modeled solar factors and the distribution function of interstellar neutral gas is accounted for in a helioglow model that we have developed. WawHelioGlow is presented in the accompanying Paper I. Here, we present the evolution of the gas density, solar illumination, helioglow source function, and other relevant parameters building up the helioglow signal for selected lines of sight observed at 1 au. We compare these elements for various phases of the solar cycle and we present the sensitivity of the results to heliolatitudinal anisotropy of the solar EUV output. We assume a realistic latitudinal anisotropy of the solar wind flux using results from analysis of interplanetary scintillations. We compare the simulated helioglow with with selected maps observed by the SOHO/SWAN instrument. We demonstrate that WawHelioGlow is able to reproduce fundamental features of the sky distribution of the helioglow. For some phases of the solar cycle, the model with an anisotropy of the solar EUV output better reproduces the observations, while for other phases no EUV anisotropy is needed. In all simulated cases, the solar wind anisotropy following insight from interplanetary scintillation measurements is present.
Accepted for ApJ
References in corpus (6)
- Density of neutral interstellar hydrogen at the termination shock from Ulysses pickup ion observations
- Neutral H density at the termination shock: a consolidation of recent results
- Neutral interstellar hydrogen in the inner heliosphere under the influence of wavelength-dependent solar radiation pressure
- Interstellar Neutral Gas Species And Their Pickup Ions Inside The Heliospheric Termination Shock. The Large-scale Structures
- WawHelioGlow: a model of the heliospheric backscatter glow. I. Model definition
- Inferring contributions from unresolved point sources to diffuse emissions measured in UV sky surveys: general method and SOHO/SWAN case study
Cited by in corpus (7)
- A new 3D solar wind speed and density model based on interplanetary scintillation
- WawHelioGlow: a model of the heliospheric backscatter glow. I. Model definition
- Backscattered solar Lyman-alpha emission as a tool for the heliospheric boundary exploration
- Influence of Heliolatitudinal Anisotropy of Solar FUV/EUV Emissions on Lyman-alpha Helioglow: SOHO/SWAN Observations and WawHelioGlow Modeling
- The flow direction of interstellar neutral H from SOHO/SWAN
- Determining the ionization rates of interstellar neutral species using direct-sampling observations of their direct and indirect beams
- Absorption of the Lyman- radiation in the heliosphere