HR: 14:40h
AN: SH53B-05 [Abstracts]
TI: Ion Holes Observed in the Upstream Solar Wind
AU: * Parks, G K
EM: parks@ssl.berkeley.edu
AF: Space Sciences Laboratory, UC Berkeley, Berkeley, CA 94720
United States
AU: Lee, E
EM: eslee@ssl.berkeley.edu
AF: Space Sciences Laboratory, UC Berkeley, Berkeley, CA 94720
United States
AU: Mozer, F
EM: fmozer@ssl.berkeley.edu
AF: Space Sciences Laboratory, UC Berkeley, Berkeley, CA 94720
United States
AU: Wilber, M
EM: wilber@ssl.berkeley.edu
AF: Space Sciences Laboratory, UC Berkeley, Berkeley, CA 94720
United States
AU: Lucek, E
EM: e.lucek@ic.ac.uk
AF: Blackett Laboratory, Imperial College, London, XXXXX
United Kingdom
AU: Dandouras, I
EM: dandouras@cesr.fr
AF: CESR, Paul Sabatier University, Toulouse, YYYYY
France
AU: Reme, H
EM: reme@cesr.fr
AF: CESR, Paul Sabatier University, Toulouse, YYYYY
France
AU: Cao, J B
EM: jbcao@center.cssar.ac.cn
AF: CSSAR, Academy of Sciences, Peking, ZZZZZ
China
AB:
We report novel observations by the Cluster and Double Star satellites of magnetic and ion hole structures upstream of the
bow shock that are much smaller and more frequent than those that have previously been reported. Their durations are
typically 20-30 s but can be as brief as 8 s, with densities more than an order of magnitude below that of the solar wind.
The ion holes are accompanied by similarly shaped magnetic holes. The electric field at the edges is bipolar and magnetic
field either compression or rotation. Multi-spacecraft timing analysis shows these holes typically have sizes about an ion
gyroradius but are expanding. An intriguing possibility is that these ion holes are the long-sought nonlinear solitary
Alfvenic ion density structures in the solar wind predicted theoretically and modeled using hybrid simulations.
DE: 7851 Shock waves (4455)
DE: 7852 Solitons and solitary waves (4455)
SC: SPA-Solar and Heliospheric Physics [SH]
MN: Fall Meeting 2005