Abstract
The design, performance, and on-orbit operation of the three-axis electric field instrument (EFI) for the NASA THEMIS mission is described. The 20 radial wire boom and 10 axial stacer boom antenna systems making up the EFI sensors on the five THEMIS spacecraft, along with their supporting electronics have been deployed and are operating successfully on-orbit without any mechanical or electrical failures since early 2007. The EFI provides for waveform and spectral three-axis measurements of the ambient electric field from DC up to 8 kHz, with a single, integral broadband channel extending up to 400 kHz. Individual sensor potentials are also measured, providing for on-board and ground-based estimation of spacecraft floating potential and high-resolution plasma density measurements. Individual antenna baselines are 50- and 40-m in the spin plane, and 6.9-m along the spin axis.
The EFI has provided for critical observations supporting a clear and definitive understanding of the electrodynamics of both the boundaries of the terrestrial magnetosphere, as well as internal processes, such as relativistic particle acceleration and substorm dynamics. Such multi-point electric field observations are key for pushing forward the understanding of electrodynamics in space, in that without high-quality estimates of the electric field, the underlying electromagnetic processes involved in current sheets, reconnection, and wave-particle interactions may only be inferred, rather than measured, quantified, and used to discriminate between competing hypotheses regarding those processes.
Preview
Unable to display preview. Download preview PDF.
Similar content being viewed by others
References
C. Cattell, J.R. Wygant, K. Goetz, K. Kersten, P.J. Kellogg, T. von Rosenvinge, S.D. Bale, I. Roth, M. Temerin, M.K. Hudson, R.A. Mewaldt, M. Wiedenbeck, M. Maksimovic, R. Ergun, M. Acuna, C.T. Russell, Discovery of very large amplitude whistler-mode waves in Earth’s radiation belts. Geophys. Res. Lett. 35, L01105 (2008). doi:10.1029/2007GL032009
C.M. Cully, R.E. Ergun, A.I. Eriksson, Electrostatic structure around spacecraft in tenuous plasmas, J. Geophys. Res. (2006)
Cully et al., THEMIS DFB, Space Sci. Rev. (2008a, this issue)
C.M. Cully, J.W. Bonnell, R.E. Ergun, THEMIS observations of long-lived regions of large-amplitude whistler waves in the inner magnetosphere. Geophys. Res. Lett. 35, L17S16 (2008b). doi:10.1029/2008GL033643
E. Engwald, Numerical studies of spacecraft-plasma interaction: simulation of wake effects on the Cluster electric field instrument EFW. IRF Scientific Report 284, Feb 2004
H.B. Garrett, A.C. Whittlesey, Spacecraft charging, an update. IEEE Trans. Plasma Sci. 28(6), 2017–2028 (2000). doi:10.1109/27.902229
P.R. Harvey, F.S. Mozer, D. Pankow, J. Wygant, N.C. Maynard, H. Singer, W. Sulivan, P.B. Anderson, R. Pfaff, T. Aggson, A. Pederson, C.-G. Falthammar, P. Tanskannen, The electric-field instrument on the Polar satellite. Space Sci. Rev. 71(1–4), 583–596 (1995)
H. Laasko, T.L. Aggson, R.F. Pfaff, Plasma gradient effects on double-probe measurements in the magnetosphere. Ann. Geophys. 13, 130–146 (1995)
M. Ludlam et al., THEMIS magnetic cleanliness specification. Space Sci. Rev. (2008, this issue)
J.P. McFadden, C.W. Carlson, D. Larson, J. Bonnell, F.S. Mozer, V. Angelopoulos, K.-H. Glassmeier, U. Auster, Structure of plasmaspheric plumes and their participation in magnetopause reconnection: first results from THEMIS. Geophys. Res. Lett. 35, L17S10 (2008a). doi:10.1029/2008GL033677
J.P. McFadden, C.W. Carlson, D. Larson, V. Angelopoulos, M. Ludlam, R. Abiad, B. Elliot, P. Turin, M. Marckwordt, The THEMIS ESA plasma instrument and in-flight calibration. Space Sci. Rev. (2008b, in press)
F.S. Mozer, Criteria for and statistics of electron diffusion regions associated with sub-solar magnetic field reconnection. J. Geophys. Res. 110(A12), A12222 (2005)
F.S. Mozer, J.-J. Berthelier, U.V. Fahleson, C.-G. Fälthammar, A proposal to measure the quasi-static vector electric field on the low altitude and the elliptic orbiting electrodynamics explorer satellites. Research Proposal to the National Aeronautics and Space Administration, UCBSSL No. 552/75, 1974
F.S. Mozer, S.D. Bale, J.P. McFadden, R.B. Torbert, New features of electron diffusion regions observed at subsolar magnetic field reconnection sites. Geophys. Res. Lett. 32(24), L24102 (2005)
F.S. Mozer, V. Angelopoulos, J. Bonnell, K.H. Glassmeier, J.P. McFadden, THEMIS observations of modified Hall fields in asymmetric magnetic field reconnection. Geophys. Res. Lett. 35, L17S04 (2008)
M. Oieroset, T.D. Phan, M. Fujimoto, R.P. Lin, R.P. Lepping, In situ detection of collisionless reconnection in the Earth’s magnetotail. Nature 412, 414 (2001)
A. Pedersen, F. Mozer, G. Gustafsson, Electric field measurements in a tenuous plasma w0ith spherical double probes, in Measurement Techniques in Space Plasmas: Fields. Geophysical. Monograph, vol. 103 (AGU, 1998)
P.A. Puhl-Quinn, H. Matsui, V.K. Jordanova, Y. Khotyaintsev, P.A. Lindqvist, An effort to derive an empirically based, inner-magnetospheric electric field model: Merging Cluster EDI and EFW data. J. Atmos. Sol.-Terr. Phys. 70(2), 564–573 (2008)
K. Sahu, S. Kniffen, Technical memo, PPM-98-008, Radiation report on OP15 (Analog Devices) (LDC9722A), Unisys Corporation—Federal Systems Division, 23 April 1998
E.C. Whipple, Potentials of surfaces in space. Rep. Prog. Phys. 44, 1197–1250 (1981)
Author information
Authors and Affiliations
Corresponding author
Editor information
Editors and Affiliations
Rights and permissions
Copyright information
© 2009 Springer Science+Business Media, BV
About this chapter
Cite this chapter
Bonnell, J.W. et al. (2009). The Electric Field Instrument (EFI) for THEMIS. In: Burch, J.L., Angelopoulos, V. (eds) The THEMIS Mission. Springer, New York, NY. https://doi.org/10.1007/978-0-387-89820-9_14
Download citation
DOI: https://doi.org/10.1007/978-0-387-89820-9_14
Publisher Name: Springer, New York, NY
Print ISBN: 978-0-387-89819-3
Online ISBN: 978-0-387-89820-9
eBook Packages: Physics and AstronomyPhysics and Astronomy (R0)