4.5 Article

Field-Aligned Currents in Saturn's Nightside Magnetosphere: Subcorotation and Planetary Period Oscillation Components During Northern Spring

Journal

JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS
Volume 123, Issue 5, Pages 3602-3636

Publisher

AMER GEOPHYSICAL UNION
DOI: 10.1029/2017JA024885

Keywords

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Funding

  1. STFC Consolidated grant [ST/N000749/1, ST/N000692/1]
  2. STFC Quota Studentship [ST/N504117/1]
  3. Ministry of Education and Science of the Russian Federation [14.616.21.0084]
  4. STFC [ST/N000692/1, ST/N000749/1] Funding Source: UKRI

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We newly analyze Cassini magnetic field data from the 2012/2013 Saturn northern spring interval of highly inclined orbits and compare them with similar data from late southern summer in 2008, thus providing unique information on the seasonality of the currents that couple momentum between Saturn's ionosphere and magnetosphere. Inferred meridional ionospheric currents in both cases consist of a steady component related to plasma subcorotation, together with the rotating current systems of the northern and southern planetary period oscillations (PPOs). Subcorotation currents during the two intervals show opposite north-south polar region asymmetries, with strong equatorward currents flowing in the summer hemispheres but only weak currents flowing to within a few degrees of the open-closed boundary (OCB) in the winter hemispheres, inferred due to weak polar ionospheric conductivities. Currents peak at similar to 1 MA rad(-1) in both hemispheres just equatorward of the open-closed boundary, associated with total downward polar currents similar to 6 MA, then fall across the narrow auroral upward current region to small values at subauroral latitudes. PPO-related currents have a similar form in both summer and winter with principal upward and downward field-aligned currents peaking at similar to 1.25 MA rad(-1) being essentially collocated with the auroral upward current and approximately equal in strength. Though northern and southern PPO currents were approximately equal during both intervals, the currents in both hemispheres were dual modulated by both systems during 2012/2013, with approximately half the main current closing in the opposite ionosphere and half cross field in the magnetosphere, while only the northern hemisphere currents were similarly dual modulated in 2008.

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