Author:
Weiss Benjamin P.,Merayo José M. G.,Ream Jodie B.,Oran Rona,Brauer Peter,Cochrane Corey J.,Cloutier Kyle,Elkins-Tanton Linda T.,Jørgensen John L.,Maurel Clara,Park Ryan S.,Polanskey Carol A.,de Soria Santacruz-Pich Maria,Raymond Carol A.,Russell Christopher T.,Wenkert Daniel,Wieczorek Mark A.,Zuber Maria T.
Abstract
AbstractThe objective of the Psyche Magnetometry Investigation is to test the hypothesis that asteroid (16) Psyche formed from the core of a differentiated planetesimal. To address this, the Psyche Magnetometer will measure the magnetic field around the asteroid to search for evidence of remanent magnetization. Paleomagnetic measurements of meteorites and dynamo theory indicate that a diversity of planetesimals once generated dynamo magnetic fields in their metallic cores. Likewise, the detection of a strong magnetic moment ($>2\times10^{14}~\text{Am}^{2}$>2×1014Am2) at Psyche would likely indicate that the body once generated a core dynamo, implying that it formed by igneous differentiation. The Psyche Magnetometer consists of two three-axis fluxgate Sensor Units (SUs) mounted 0.7 m apart along a 2.15-m long boom and connected to two Electronics Units (EUs) located within the spacecraft bus. The Magnetometer samples at up to 50 Hz, has a range of$\pm80{,}000~\text{nT}$±80,000nT, and an instrument noise of$39~\text{pT}\,\text{axis}^{-1}\,3\sigma $39pTaxis−13σintegrated over 0.1 to 1 Hz. The two pairs of SUs and EUs provide redundancy and enable gradiometry measurements to suppress noise from flight system magnetic fields. The Magnetometer will be powered on soon after launch and acquire data for the full duration of the mission. The ground data system processes the Magnetometer measurements to obtain an estimate of Psyche’s dipole moment.
Funder
National Aeronautics and Space Administration
Massachusetts Institute of Technology
Publisher
Springer Science and Business Media LLC
Subject
Space and Planetary Science,Astronomy and Astrophysics
Cited by
10 articles.
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