Published April 10, 2015 | Version Published
Journal Article Open

Energetic Particle Anisotropies at the Heliospheric Boundary. II. Transient Features and Rigidity Dependence

  • 1. ROR icon University of Alabama in Huntsville
  • 2. ROR icon California Institute of Technology

Abstract

In the preceding paper, we showed that large second-order anisotropies of heliospheric ions measured by the Voyager 1 space probe during the August 2012 boundary crossing event could be explained by a magnetic shear across the heliopause preventing particles streaming along the magnetic field from escaping the inner heliosheath. According to Stone et al., the penetration distance of heliospheric ions into the outer heliosheath had a strong dependence on the particle's Larmor radius. By comparing hydrogen, helium, and oxygen ions with the same energy per nucleon, these authors argued that this effect must be attributed to larger cyclotron radii of heavier species rather than differences in velocity. We propose that gradient drift in a nonuniform magnetic field was the cause of both the large second-order anisotropies and the spatial differentiation based on the ion's rigidity. A latitudinal gradient of magnetic field strength of about 10% per AU between 2012.7 and 2012.9 could have provided drift motion sufficient to match both LECP and CRS Voyager 1 observations. We explain the transient intensity dropout observed prior to the heliocliff using flux tube structures embedded in the heliosheath and magnetically connected to interstellar space. Finally, this paper reports a new indirect measurement of the plasma radial velocity at the heliopause on the basis of the time difference between two cosmic-ray telescopes measuring the same intensity dropout.

Additional Information

© 2015 American Astronomical Society. Received 2014 October 29; accepted 2015 February 12; published 2015 April 13. This work was supported, in part, by NASA grants NNX10AE46G, NNX11AO64G, NNX12AH44G, NNX13AF99G, and NNX14AF43G, by NSF grant AGS-0955700, and a cooperative agreement with NASA Marshall Space Flight Center NNM11AA01A. V.F. thanks Ed Roelof for a helpful discussion.

Attached Files

Published - 0004-637X_803_1_47.pdf

Files

0004-637X_803_1_47.pdf

Files (699.6 kB)

Name Size
md5:a17194915587616bdfe6d5650ccc340a
699.6 kB Preview Download

Additional details

Identifiers

Eprint ID
57583
Resolver ID
CaltechAUTHORS:20150518-085218576

Funding

NASA
NNX10AE46G
NASA
NNX11AO64G
NASA
NNX12AH44G
NASA
NNX13AF99G
NASA
NNX14AF43G
NSF
AGS-0955700
NASA
NNM11AA01A

Dates

Created
2015-05-18
Created from EPrint's datestamp field
Updated
2021-11-10
Created from EPrint's last_modified field

Caltech Custom Metadata

Caltech groups
Space Radiation Laboratory
Other Numbering System Name
Space Radiation Laboratory
Other Numbering System Identifier
2015-03