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Enhanced magnetic compressibility and isotropic scale invariance at sub-ion lamor scales in solar wind turbulence

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Kiyani, K., Chapman, Sandra C., Sahraoui, F., Hnat, B., Fauvarque, O. and Khotyaintsev, Yu. V. (2013) Enhanced magnetic compressibility and isotropic scale invariance at sub-ion lamor scales in solar wind turbulence. Astrophysical Journal, 763 (1). 10. doi:10.1088/0004-637X/763/1/10 ISSN 0004-637X.

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Official URL: http://dx.doi.org/10.1088/0004-637X/763/1/10

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Abstract

The anisotropic nature of solar wind magnetic turbulence fluctuations is investigated scale by scale using high cadence in situ magnetic field measurements from the Cluster and ACE spacecraft missions. The data span five decades in scales from the inertial range to the electron Larmor radius. In contrast to the inertial range, there is a successive increase toward isotropy between parallel and transverse power at scales below the ion Larmor radius, with isotropy being achieved at the electron Larmor radius. In the context of wave-mediated theories of turbulence, we show that this enhancement in magnetic fluctuations parallel to the local mean background field is qualitatively consistent with the magnetic compressibility signature of kinetic Alfvén wave solutions of the linearized Vlasov equation. More generally, we discuss how these results may arise naturally due to the prominent role of the Hall term at sub-ion Larmor scales. Furthermore, computing higher-order statistics, we show that the full statistical signature of the fluctuations at scales below the ion Larmor radius is that of a single isotropic globally scale-invariant process distinct from the anisotropic statistics of the inertial range.

Item Type: Journal Article
Divisions: Faculty of Science, Engineering and Medicine > Science > Physics
Journal or Publication Title: Astrophysical Journal
Publisher: IOP Publishing
ISSN: 0004-637X
Official Date: 20 January 2013
Dates:
DateEvent
20 January 2013Published
27 December 2012Available
11 November 2012Accepted
Volume: 763
Number: 1
Article Number: 10
DOI: 10.1088/0004-637X/763/1/10
Status: Peer Reviewed
Publication Status: Published
Access rights to Published version: Restricted or Subscription Access

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