HR: 08:45h
AN: SH11A-04 [Abstracts]
TI: Voyager 2 Observations of Langmuir Waves Upstream of the Termination Shock
AU: * Kurth, W S
EM: william-kurth@uiowa.edu
AF: University of Iowa, Dept. of Physics and Astronomy, Iowa City, IA 52242, United States
AU: Gurnett, D A
EM: donald-gurnett@uiowa.edu
AF: University of Iowa, Dept. of Physics and Astronomy, Iowa City, IA 52242, United States
AU: Decker, R B
AF: Applied Physics Laboratory, Johns Hopkins University, Laurel, MD 20723, United States
AU: Krimigis, S M
AF: Applied Physics Laboratory, Johns Hopkins University, Laurel, MD 20723, United States
AU: Richardson, J D
AF: Massachusetts Inst. of Technology, Center for Space Research, Cambridge, MA 02139,
United States
AU: Stone, E C
AF: CalTech, Space Radiation Laboratory, Pasadena, CA 91125, United States
AB:
Electrons from a collisionless shock beamed upstream into the supersonic flow are often unstable to Langmuir
waves, also called electron plasma oscillations. These were expected to be precursors to crossings of the
termination shock and Voyager 1 observed these occasionally for about 10 months prior to that spacecraft
encountering the shock on Dec. 16, 2004. Analysis of the solar wind conditions leading up to the Voyager 1
crossing suggested increasing pressure in the supersonic wind probably resulting in the spacecraft chasing the
shock for a good portion of the 10-month interval during which the Langmuir waves were observed. Beginning on
Aug. 1, 2007, the Voyager 2 plasma wave instrument recorded Langmuir waves at 311 Hz in the most extensive
such activity since the Neptune encounter. Additional activity was observed briefly on August 26 and extensively
on Aug. 29-30, 2007. In this most recent event, some wave activity was also found in the 562 Hz channel. For a
plasma frequency at the center of the 311 Hz channel, the electron density is about 0.0012
cm-3. A plasma frequency of 562 Hz corresponds to a density of about 0.0039 cm-3. Measurements of
the plasma density by the Voyager 2 plasma instrument are consistent with this range of plasma frequencies.
The Langmuir waves appear to occur when large fluxes of ~20 keV ions are observed by the Voyager 2
LECP instrument. While the ions are not directly responsible for the Langmuir waves, this association strongly
suggests a magnetic connection to the termination shock, especially with an abrupt energy cutoff in the ion
anisotropies, as is observed. The plasma instrument indicated decreasing solar wind pressure during August
2007 and even earlier. Hence, contrary to the situation with the Voyager 1 crossing, it may be that the termination
shock is moving inward and a crossing by Voyager 2 will occur on a time scale much shorter than the 10-month
upstream interval observed by Voyager 1.
DE: 2124 Heliopause and solar wind termination
DE: 2126 Heliosphere/interstellar medium interactions
DE: 2159 Plasma waves and turbulence
SC: SPA-Solar and Heliospheric Physics [SH]
MN: 2007 Fall Meeting