Evidence from radial velocity measurements of a global electric field in Saturn's inner magnetosphere. Issue 5 (21st May 2013)
- Record Type:
- Journal Article
- Title:
- Evidence from radial velocity measurements of a global electric field in Saturn's inner magnetosphere. Issue 5 (21st May 2013)
- Main Title:
- Evidence from radial velocity measurements of a global electric field in Saturn's inner magnetosphere
- Authors:
- Wilson, R. J.
Bagenal, F.
Delamere, P. A.
Desroche, M.
Fleshman, B. L.
Dols, V. - Abstract:
- Abstract : [1] The presence of a convection pattern in the Saturnian inner magnetosphere was first observed in moon signatures that were displaced from their expected locations. A noon to midnight directed electric field can account for these positional offsets, and also can explain asymmetries found in plasma temperatures between the day and night sides. By assuming magnetic field models and drift times, estimates of the electric field strength have been made. However the origin of the electric field remains a mystery. This paper, which presents new evidence for the convection pattern, uses measured in situ velocities with measured magnetic field values, at a range of radial distances without the restriction of requiring the presence of a moon. Advances in extracting plasma parameters with reduced uncertainties clearly show the convection pattern that was previously hidden when uncertainties were large. We confirm the earlier findings that there is a distinct drift velocity superposed on the corotating plasma that pushes the plasma toward ∼dawn that dominates over the general plasma outflow. We find that an electric field directed toward 01–02 h Saturnian local time best describes this drift, and that the value of the electric field strength is not constant with radial distance. Key Points: Uses in‐situ velocity and magnetic field data to investigate convection pattern ExB drift dominates radial flow below 10 Rs, E ranges from 0.1‐0.4 mV/m Electric Field is offset towardsAbstract : [1] The presence of a convection pattern in the Saturnian inner magnetosphere was first observed in moon signatures that were displaced from their expected locations. A noon to midnight directed electric field can account for these positional offsets, and also can explain asymmetries found in plasma temperatures between the day and night sides. By assuming magnetic field models and drift times, estimates of the electric field strength have been made. However the origin of the electric field remains a mystery. This paper, which presents new evidence for the convection pattern, uses measured in situ velocities with measured magnetic field values, at a range of radial distances without the restriction of requiring the presence of a moon. Advances in extracting plasma parameters with reduced uncertainties clearly show the convection pattern that was previously hidden when uncertainties were large. We confirm the earlier findings that there is a distinct drift velocity superposed on the corotating plasma that pushes the plasma toward ∼dawn that dominates over the general plasma outflow. We find that an electric field directed toward 01–02 h Saturnian local time best describes this drift, and that the value of the electric field strength is not constant with radial distance. Key Points: Uses in‐situ velocity and magnetic field data to investigate convection pattern ExB drift dominates radial flow below 10 Rs, E ranges from 0.1‐0.4 mV/m Electric Field is offset towards 01-02 LT rather than directed towards midnight … (more)
- Is Part Of:
- Journal of geophysical research. Volume 118:Issue 5(2013:May)
- Journal:
- Journal of geophysical research
- Issue:
- Volume 118:Issue 5(2013:May)
- Issue Display:
- Volume 118, Issue 5 (2013)
- Year:
- 2013
- Volume:
- 118
- Issue:
- 5
- Issue Sort Value:
- 2013-0118-0005-0000
- Page Start:
- 2122
- Page End:
- 2132
- Publication Date:
- 2013-05-21
- Subjects:
- Saturn -- electric field -- CAPS
Magnetospheric physics -- Periodicals
Space environment -- Periodicals
Cosmic physics -- Periodicals
Planets -- Atmospheres -- Periodicals
Heliosphere (Astrophysics) -- Periodicals
Geophysics -- Periodicals
523.01 - Journal URLs:
- http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)2169-9402 ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1002/jgra.50251 ↗
- Languages:
- English
- ISSNs:
- 2169-9380
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 4995.010000
British Library DSC - BLDSS-3PM
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- 493.xml