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Ion kinetic energy conservation and magnetic field strength constancy in multi-fluid solar wind alfvénic turbulence

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Matteini 2015 0004-637X_802_1_11.pdfPublished version1.82 MBAdobe PDFView/Open
Title: Ion kinetic energy conservation and magnetic field strength constancy in multi-fluid solar wind alfvénic turbulence
Authors: Matteini, L
Horbury, TS
Pantellini, F
Velli, M
Schwartz, SJ
Item Type: Journal Article
Abstract: We investigate the properties of plasma fluid motion in the large-amplitude, low-frequency fluctuations of highly Alfvénic fast solar wind. We show that protons locally conserve total kinetic energy when observed from an effective frame of reference comoving with the fluctuations. For typical properties of the fast wind, this frame can be reasonably identified by alpha particles which, due to their drift with respect to protons at about the Alfvén speed along the magnetic field, do not partake in the fluid low-frequency fluctuations. Using their velocity to transform the proton velocity into the frame of Alfvénic turbulence, we demonstrate that the resulting plasma motion is characterized by a constant absolute value of the velocity, zero electric fields, and aligned velocity and magnetic field vectors as expected for unidirectional Alfvénic fluctuations in equilibrium. We propose that this constraint, via the correlation between velocity and magnetic field in Alfvénic turbulence, is the origin of the observed constancy of the magnetic field; while the constant velocity corresponding to constant energy can only be observed in the frame of the fluctuations, the corresponding constant total magnetic field, invariant for Galilean transformations, remains the observational signature in the spacecraft frame of the constant total energy in the Alfvén turbulence frame
Issue Date: 20-Mar-2015
Date of Acceptance: 4-Jan-2015
URI: http://hdl.handle.net/10044/1/25437
DOI: 10.1088/0004-637X/802/1/11
ISSN: 1538-4357
Publisher: American Astronomical Society
Journal / Book Title: Astrophysical Journal
Volume: 802
Issue: 1
Copyright Statement: © 2015. The American Astronomical Society. All rights reserved.
Sponsor/Funder: Science and Technology Facilities Council (STFC)
The Leverhulme Trust
Science and Technology Facilities Council (STFC)
Science and Technology Facilities Council [2006-2012]
Funder's Grant Number: ST/K001051/1
RF-2015-188
ST/N000692/1
ST/K001051/1
Keywords: Science & Technology
Physical Sciences
Astronomy & Astrophysics
magnetohydrodynamics (MHD)
plasmas
solar wind
turbulence
waves
ULYSSES OBSERVATIONS
WAVES
FLUCTUATIONS
SPEED
Science & Technology
Physical Sciences
Astronomy & Astrophysics
magnetohydrodynamics (MHD)
plasmas
solar wind
turbulence
waves
ULYSSES OBSERVATIONS
WAVES
FLUCTUATIONS
PLASMA
SPEED
AU
physics.space-ph
physics.space-ph
astro-ph.SR
physics.plasm-ph
0201 Astronomical and Space Sciences
0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
0306 Physical Chemistry (incl. Structural)
Astronomy & Astrophysics
Publication Status: Published
Article Number: ARTN 11
Appears in Collections:Space and Atmospheric Physics
Physics
Faculty of Natural Sciences