4.2 Article

Centrifugal acceleration in the magnetotail lobes

Journal

ANNALES GEOPHYSICAE
Volume 28, Issue 2, Pages 569-576

Publisher

COPERNICUS GESELLSCHAFT MBH
DOI: 10.5194/angeo-28-569-2010

Keywords

Magnetospheric; physics; Magnetosphere-ionosphere interactions

Funding

  1. Swedish Research Council

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Combined Cluster EFW and EDI measurements have shown that cold ion outflow in the magnetospheric lobes dominates the hydrogen ion outflow from the Earth's atmosphere. The ions have too low kinetic energy to be measurable with particle instruments, at least for the typical spacecraft potential of a sunlit spacecraft in the tenuous lobe plasmas outside a few R-E. The measurement technique yields both density and bulk velocity, which can be combined with magnetic field measurements to estimate the centrifugal acceleration experienced by these particles. We present a quantitative estimate of the centrifugal acceleration, and the velocity change with distance which we would expect due to centrifugal acceleration. It is found that the centrifugal acceleration is on average outward with an average value of about of 5 m s(-2). This is small, but acting during long transport times and over long distances the cumulative effect is significant, while still consistent with the relatively low velocities estimated using the combination of EFW and EDI data. The centrifugal acceleration should accelerate any oxygen ions in the lobes to energies observable by particle spectrometers. The data set also put constraints on the effectiveness of any other acceleration mechanisms acting in the lobes, where the total velocity increase between 5 and 19 R-E geocentric distance is less than 5 km s(-1).

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