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Global Characteristics of the IBEX Ribbon and Its Temporal Variation: Implications for Relationships with Solar Cycle Variability and the Interstellar Magnetic Field

  • Sung Jun Noh
  • , Daniel B. Reisenfeld
  • , Eric J. Zirnstein
  • , Herbert O. Funsten
  • , Paul H. Janzen
  • , Thomas K. Kim
  • , Nehpreet K. Walia
  • , Fan Guo
  • , Dave Osthus
  • , Lauren J. Beesley
  • , Justyna M. Sokół
  • , Kenichi Fujiki
  • Los Alamos National Laboratory
  • Princeton University
  • Southwest Research Institute
  • Nagoya University

Research output: Contribution to journalArticlepeer-review

Abstract

The Interstellar Boundary Explorer (IBEX) has revealed the existence of the energetic neutral atom (ENA) ribbon, a narrow and nearly circular band of enhanced flux that enables probing plasma and magnetic field conditions outside the heliopause (HP). In this study, we investigate the global structure and temporal variation of the IBEX ribbon using 14 yr of IBEX-Hi ENA observations. We derive geometric parameters of the ribbon: center location, angular radius, eccentricity, and major axis orientation. We find that the ribbon exhibits systematic variations tied to the solar cycle. The ribbon center shows a solar cycle–modulated latitudinal motion at low energies. The angular radius increases with ENA energy and displays a pronounced enlargement between 2013 and 2018, coinciding with changes in high-latitude fast solar wind from polar coronal holes. The eccentricity remains consistently around 0.3 with some temporal evolution, while the major axis rotates gradually over time, becoming increasingly perpendicular to the ecliptic meridional plane. A notable hemispheric asymmetry has emerged over time: the ribbon in the northern hemisphere remains remarkably stable in position, whereas the southern ribbon exhibits temporal migration. By combining these results with solar wind observations, global heliosphere, and ribbon modeling, we suggest that this asymmetry is explained by a coupled effect of magnetic field draping and the latitude-dependent timing of fast solar wind from polar coronal holes. These results establish the most detailed long-term geometric characterization of the IBEX ribbon to date and provide observational support for models of secondary ENA production and magnetic field draping outside the HP.

Original languageEnglish
Article number126
JournalAstrophysical Journal
Volume1003
Issue number2
DOIs
StatePublished - Jun 1 2026

Keywords

  • Heliosphere (711)

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