DocumentCode
126480
Title
First results from the Langmuir Probes on the Swarm satellites
Author
Buchert, Stephan C. ; Eriksson, Anders ; Gill, Reine ; Nilsson, Tomas ; Ahlen, Lennart ; Wahlund, Jan-Erik ; Knudsen, David ; Burchill, Johnathan ; Archer, William ; Kouznetsov, Alexei ; Stricker, N. ; Bouridah, Abderrazak ; Bock, Ralph ; Haggstrom, Ingem
Author_Institution
Swedish Inst. of Space Phys., Uppsala, Sweden
fYear
2014
fDate
16-23 Aug. 2014
Firstpage
1
Lastpage
1
Abstract
Langmuir Probes (LP) are well-proven simple instruments allowing to estimate the electron density (Ne) and temperature (Te) of a plasma. They are also used to estimate the electric potential of satellites to the benefit of other instruments and technical systems. On the Swarm satellites the LPs are part of the Electric Field Instruments (EFI) featuring thermal ion imagers (TII) measuring 3-d ion distributions. The main task of the Langmuir probes is to provide measurements of spacecraft potentials influencing the ions before they enter the TIIs. In addition also electron density (Ne) and temperature (Te) are estimated from EFI LP data. The design of the Swarm LP includes a standard current sampling under sweeps of the bias voltage, and also, for most of the time, a novel ripple technique yielding derivatives of the current-voltage characteristics at three points in a rapid cycle. In normal mode the time resolution of the Ne and Te measurements so becomes only 0.5 s. We show first Ne and Te estimates from the EFI LPs obtained. The data feature very low instrumental noise thanks to the ripple technique. The LP data are compared with observations by incoherent scatter radars, namely EISCAT UHF, VHF, the ESR, and also Arecibo.
Keywords
Langmuir probes; atmospheric measuring apparatus; atmospheric techniques; plasma density; plasma temperature; remote sensing by radar; 3-d ion distributions; Arecibo; EFI LP data; EISCAT UHF; EISCAT VHF; ESR; Electric Field Instruments; Langmuir probes; Swarm satellites; current-voltage characteristics; incoherent scatter radars; novel ripple technique; plasma electron density; plasma temperature; ripple technique; satellite electric potential; thermal ion imagers; Electric potential; Extraterrestrial measurements; Plasma temperature; Probes; Satellites; Temperature measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
General Assembly and Scientific Symposium (URSI GASS), 2014 XXXIth URSI
Conference_Location
Beijing
Type
conf
DOI
10.1109/URSIGASS.2014.6929846
Filename
6929846
Link To Document