Interstellar probes could theoretically detect undiscovered outer planets through gravitational anomalies
Interstellar and outer planetary probes use radio-metric Doppler tracking and trajectory analysis to measure gravitational forces, which theoretically and historically helps identify unmodeled accelerations or potential massive bodies in the outer solar system.
The claim is specific and empirical, focusing on whether interstellar or deep space probes can detect outer planets or gravitational anomalies. Papers discussing spacecraft Doppler tracking (such as Pioneer and Uranus mission concepts) and deep-space precursor probes support the premise that tracking probe trajectories reveals gravitational anomalies and can constrain outer solar system bodies or dark matter.
L. Zwick, Deniz Soyuer, D. D’Orazio, David O’Neill, Andrea Derdzinski, P. Saha, Diego Blas, A. Jenkins, L. Z. Kelley. Bridging the micro-Hz gravitational wave gap via Doppler tracking with the Uranus Orbiter and Probe mission: Massive black hole binaries, early Universe signals, and ultralight dark matter. 2024. https://doi.org/10.1103/qp2h-y4b2
Bridging the micro-Hz gravitational wave gap via Doppler tracking with the Uranus Orbiter and Probe mission: Massive black hole binaries, early Universe signals, and ultralight dark matter (2024)
See more details
Turyshev SG, Toth VT. The Pioneer Anomaly.. 2010. https://doi.org/10.12942/lrr-2010-4
The Pioneer Anomaly (2010)
K. Long. Sunvoyager: Interstellar Precursor Probe Mission Concept Driven by Inertial Confinement Fusion Propulsion. 2023. https://doi.org/10.2514/1.a35539
Sunvoyager: Interstellar Precursor Probe Mission Concept Driven by Inertial Confinement Fusion Propulsion (2023)
The paper trail · every fact has a biography
Challenge the receipt
Citation formatting by citeproc-js (Frank Bennett) and the Citation Style Language project. Source and licenses.
Terms · Privacy · How verdicts work · Dispute this receipt