HYDRA-A3-DIMENSIONAL ELECTRON AND ION HOT PLASMA INSTRUMENT FOR THE POLAR SPACECRAFT OF THE GGS MISSION

被引:154
作者
SCUDDER, J
HUNSACKER, F
MILLER, G
LOBELL, J
ZAWISTOWSKI, T
OGILVIE, K
KELLER, J
CHORNAY, D
HERRERO, F
FITZENREITER, R
FAIRFIELD, D
NEEDELL, J
BODET, D
GOOGINS, J
KLETZING, C
TORBERT, R
VANDIVER, J
BENTLEY, R
FILLIUS, W
MCILWAIN, C
WHIPPLE, E
KORTH, A
机构
[1] NASA,GODDARD SPACE FLIGHT CTR,EXTRATERR PHYS LAB,GREENBELT,MD 20771
[2] UNIV NEW HAMPSHIRE,DURHAM,NH 03824
[3] UNIV CALIF SAN DIEGO,LA JOLLA,CA 92093
[4] VANDIVER ASSOCIATES,HUNTSVILLE,AL
[5] MPAE,KATLENBERG LINDAU,GERMANY
关键词
D O I
10.1007/BF00751338
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
HYDRA is an experimental hot plasma investigation for the POLAR spacecraft of the GGS program. A consortium of institutions has designed a suite of particle analyzers that sample the velocity space of electron and ions between similar or equal to 2 keV/q - 35 keV/q in three dimensions, with a routine time resolution of 0.5 s. Routine coverage of velocity space will be accomplished with an angular homogeneity assumption of similar or equal to 16 degrees, appropriate for subsonic plasmas, but with special similar or equal to 1.5 degrees resolution for electrons with energies between 100 eV and 10 keV along and opposed to the local magnetic field. This instrument produces 4.9 kilobits s(-1) to the telemetry, consumes on average 14 W and requires 18.7 kg for deployment including its internal shielding. The scientific objectives for the polar magnetosphere fall into four broad categories: (1) those to define the ambient kinetic regimes of ions and electrons; (2) those to elucidate the magnetohydrodynamic responses in these regimes; (3) those to assess the particle populations with high time resolution; and (4) those to determine the global topology of the magnetic field. In the first group are issues of identifying the origins of particles at high magnetic latitudes, their energization, the altitude dependence of the forces, including parallel electric fields they have traversed. In the second group are the physics of the fluid flows, regimes of current, and plasma depletion zones during quiescent and disturbed magnetic conditions. In the third group is the exploration of the processes that accompany the rapid time variations known to occur in the auroral zone, cusp and entry layers as they affect the flow of mass, momentum and energy in the auroral region. In the fourth class of objectives are studies in conjunction with the SWE measurements of the Strahl in the solar wind that exploit the small gyroradius of thermal electrons to detect those magnetic field lines that penetrate the auroral region that are directly 'open' to interplanetary space where, for example, the Polar Rain is observed.
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页码:459 / 495
页数:37
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