Towards understanding time variations of proton to helium ratios in the heliosphere: Implication for the time dependence of the elements of the diffusion tensor
| dc.contributor.author | Ngobenia, M.D | en.ZA |
| dc.contributor.author | Potgieterb, M.S | en.ZA |
| dc.contributor.author | Aslam, O.P.M | en.ZA |
| dc.date.accessioned | 2025-10-08T07:56:09Z | en.ZA |
| dc.date.issued | 2024 | en.ZA |
| dc.description | Journal Article, Faculty of Natural and Agricultural Sciences, Centre for Space Research (CSR)-- Potchefstroom Campus | en.ZA |
| dc.description.abstract | Acomprehensive three-dimensional numerical model for the modulation of cosmic rays in the heliosphere is applied to investigate the relative roles of the time dependence of the elements of the diffusion tensor on the proton to total Helium (p/He) and Helium-3 to Helium-4 (3He2/4He2) ratios at rigidities below 3 GV. At these rigidities the ratios have been observed by both PAMELA and AMS02 detectors to have a time variation in response to changing solar activity. We found that the contribution of the time dependence of the perpendicular diffusion in the radial direction of the heliosphere is the dominant cause of this observed time variation, especially in the A < 0 magnetic field cycle, and not any fundamental difference between the solar modulation of galactic protons and He-isotopes. It follows that neglecting this time dependence from numerical models, both in value and its rigidity dependence, would produce time trends in the mentioned ratios that are incompatible with observed trends at the Earth. Furthermore, we found differences in the computed time trends of p/He and 3He2/4He2 ratios at rigidities below 1.5 GV. This is mainly a consequence of an interplay between per pendicular diffusion in the radial direction and adiabatic energy losses which begin to influence modulated spectra at a higher rigidity for 3He2 than for 4He2, and for total He than for protons. | en.ZA |
| dc.description.sponsorship | Acknowledgements MDN thanks the SA National Research Foundation (NRF) for partial financial support under Italy and SA Joint Research Programme (Grant no: 150556). He also acknowledges that the opinions, findings and conclusions or recommendations expressed in any publication generated by the NRF supported research is that of the authors alone, and that the NRF accepts no liability whatsoever in this regard. OPMA acknowledges the support from the Shandong Institute of Advanced Technology (SDIAT) and NSFC Project U2106201. | en.ZA |
| dc.identifier.citation | Ngobenia, M.D. et al. 2024. Towards understanding time variations of proton to helium ratios in the heliosphere: Implication for the time dependence of the elements of the diffusion tensor. Advances in Space Research 73 (2024) 2816–2830, [https://doi.org/10.1016/j.asr.2023.12.025] | en.ZA |
| dc.identifier.uri | https://doi.org/10.1016/j.asr.2023.12.025 | en.ZA |
| dc.identifier.uri | http://hdl.handle.net/10394/43566 | en.ZA |
| dc.language.iso | en | en.ZA |
| dc.publisher | Advances in Space Research | en.ZA |
| dc.subject | Cosmic Rays | en.ZA |
| dc.subject | Helium Isotopes | en.ZA |
| dc.subject | Solar Modulation | en.ZA |
| dc.subject | Solar Activity | en.ZA |
| dc.title | Towards understanding time variations of proton to helium ratios in the heliosphere: Implication for the time dependence of the elements of the diffusion tensor | en.ZA |
| dc.type | Article | en.ZA |
