Is the magnetic field in the heliosheath laminar or a turbulent bath of bubbles?
M. Opher, J. F. Drake, M. Swisdak, K. M. Schoeffler, J. D. Richardson,, R. B. Decker, G. Toth

TL;DR
This paper challenges the assumption that the magnetic field in the heliosheath is laminar, proposing instead that it consists of magnetic bubbles resulting from sectored field annihilation, supported by high-resolution 3D MHD simulations and observational data.
Contribution
The study introduces a novel model where magnetic bubbles replace laminar fields in the heliosheath, supported by simulations and analysis of Voyager data.
Findings
Magnetic bubbles form due to sectored field annihilation.
Disordered magnetic regions extend significantly in the northern heliosphere.
Voyager observations support the presence of disordered, bubble-like magnetic structures.
Abstract
All the current global models of the heliosphere are based on the assumption that the magnetic field in the heliosheath, in the region close to the heliopause is laminar. We argue that in that region the heliospheric magnetic field is not laminar but instead consists of magnetic bubbles. Recently, we proposed that the annihilation of the "sectored" magnetic field within the heliosheath as it is compressed on its approach to the heliopause produces the anomalous cosmic rays and also energetic electrons. As a product of the annihilation of the sectored magnetic field, densely-packed magnetic islands/bubbles are produced. These magnetic islands/bubbles will be convected with the ambient flows as the sector region is carried to higher latitudes filling the heliosheath. We further argue that the magnetic islands/bubbles will develop upstream within the heliosheath. As a result, the magnetic…
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