The FIELDS Instrument Suite on MMS: Scientific Objectives, Measurements, and Data Products
Комплекс приборов FIELDS на MMS: научные цели, измерения и продукты данных
2014-11-19
SCID: 54.1/xdg5b85w
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FIELDS instrument suiteMagnetospheric Multiscale missioncross-calibrationmagnetic and electric field measurementsmagnetopause magnetic reconnection
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Abstract (AI)
The FIELDS instrumentation suite on the Magnetospheric Multiscale (MMS) mission provides comprehensive measurements of the full vector magnetic and electric fields in the reconnection regions investigated by MMS, including the dayside magnetopause and the night-side magnetotail acceleration regions out to 25 Re. Six sensors on each of the four MMS spacecraft provide overlapping measurements of these fields with sensitive cross-calibrations both before and after launch. The FIELDS magnetic sensors consist of redundant flux-gate magnetometers (AFG and DFG) over the frequency range from DC to 64 Hz, a search coil magnetometer (SCM) providing AC measurements over the full whistler mode spectrum expected to be seen on MMS, and an Electron Drift Instrument (EDI) that calibrates offsets for the magnetometers. The FIELDS three-axis electric field measurements are provided by two sets of biased double-probe sensors (SDP and ADP) operating in a highly symmetric spacecraft environment to reduce significantly electrostatic errors. These sensors are complemented with the EDI electric measurements that are free from all local spacecraft perturbations. Cross-calibrated vector electric field measurements are thus produced from DC to 100 kHz, well beyond the upper hybrid resonance whose frequency provides an accurate determination of the local electron density. Due to its very large geometric factor, EDI also provides very high time resolution (∼1 ms) ambient electron flux measurements at a few selected energies near 1 keV. This paper provides an overview of the FIELDS suite, its science objectives and measurement requirements, and its performance as verified in calibration and cross-calibration procedures that result in anticipated errors less than 0.1 nT in B and 0.5 mV/m in E . Summaries of data products that result from FIELDS are also described, as well as algorithms for cross-calibration. Details of the design and performance characteristics of AFG/DFG, SCM, ADP, SDP, and EDI are provided in five companion papers.
Key Findings
1
Cross-calibrated electric-field measurements span DC to 100 kHz, exceeding the upper-hybrid resonance and enabling accurate local electron-density determination.
2
EDI additionally provides approximately 1 ms electron-flux measurements at selected energies near 1 keV, while the paper documents associated data products and calibration algorithms.
3
FIELDS achieves anticipated measurement errors below 0.1 nT for magnetic fields and 0.5 mV/m for electric fields after calibration and cross-calibration.
4
Redundant fluxgate, search-coil, EDI, and double-probe sensors provide overlapping, cross-calibrated field measurements across broad frequency ranges.
5
The MMS FIELDS suite measures full-vector magnetic and electric fields in magnetic-reconnection regions, including the dayside magnetopause and magnetotail out to 25 Re.
Research Object
The FIELDS instrumentation suite on the four-spacecraft Magnetospheric Multiscale (MMS) mission, measuring electromagnetic fields and ambient electron fluxes in magnetic reconnection regions
Research Subject
The measurement performance, cross-calibration, scientific measurement capabilities, and data products of the FIELDS suite for vector magnetic and electric fields and electron fluxes
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2014-11-19
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