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May 27, 20260 citations

Electron density estimation from measurements of spacecraft potential using Solar Orbiter

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JBJ. J. BoldúDGD. B. GrahamYKYu. V. Khotyaintsev

Key Points

  • This research aims to enhance methods for estimating electron density using spacecraft potential measurements.
  • Combined measurements of probe-to-spacecraft potential (Vps) and probe-to-plasma potential (Vpn) were utilized to determine spacecraft potential (Vsc).
  • Electric current balance relationships were established to connect electron density with Vsc, calibrated using electron plasma frequency observations.
  • Electron density estimates were obtained across various Vsc conditions, including negative values.
  • Vsc exhibited negative values more frequently than expected for sunlit spacecraft in a low-density plasma environment.
  • Identified occurrences of Vsc changes allowed for more accurate electron density estimations.
  • Distinction between genuine negative charging and apparent negative charging imposed by solar panel disconnection refined electron density estimation methods.

Abstract

Context. Measurements of spacecraft potential (Vsc) are an important tool for plasma diagnostics. High-resolution Vsc measurements can be calibrated with low-cadence observations of electron plasma frequency to derive high-resolution electron density data. Aims. We analyze Vsc measured by the Radio and Plasma Waves (RPW) instrument suite on board Solar Orbiter. We investigate the evolution of Vsc within the framework of the heliocentric distance and mission lifetime. We aim to obtain electron density estimates that are valid across a wider range of Vsc regimes, including the cases of negative Vsc. Methods. We determined Vsc by combining measurements of the probe-to-spacecraft potential, Vps, and the probe-to-plasma potential, Vpn. Then, we used the appropriate electric current balance to find a relation between electron density and Vsc, which we calibrated to the observed electron plasma frequency. With this method, we obtained the electron density at the resolution given by the Vps measurements. Results. We find that Vsc reaches negative values for a larger amount of time than expected for a sunlit spacecraft immersed in a tenuous plasma such as the solar wind. We are now able to identify when these Vsc changes occur, enabling us to estimate the electron density accordingly. Conclusions. Solar Orbiter charges negatively during periods of high plasma density and low photoelectron emission. However, the measured Vsc is also influenced by the electrical disconnection of the solar arrays from the spacecraft ground during fuse-blowing events. This disconnection raises the local plasma potential near the probes, causing the measured Vsc to appear negative even when Solar Orbiter remains positively charged. By distinguishing between the genuine negative spacecraft charging and the apparent negative charging induced by solar panels, we can refine previous electron density estimation methods to include cases when Vsc < 0 V. This approach provides reliable, high-resolution electron density estimates across both positive and negative Vsc regimes.

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Cite This Study

Boldú et al. (2026) studied this question.

synapsesocial.com/papers/6a168b040c924ddd1bd59db0https://doi.org/10.1051/0004-6361/202659386/pdf
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Solar Orbiter charging effects on electron measurements via SPIS simulation.2024
  2. 2Derivation of Ambient Electron Density Using Spacecraft Potential Measurements From the MMS and Van Allen Satellites: Application to the Plasmasphere2026
  3. 3Electron temperatures in the ionosphere of Venus from Solar Orbiter/Radio and Plasma Waves instrument2026
  4. 4Modelling spacecraft-emitted electrons measured by the SWA-EAS experiment on board the Solar Orbiter mission2026
  5. 5Solar Orbiter in Venus' Ionosphere: Observations From the 4th Flyby2026 · 2 citations