Abstract While the Planet Nine hypothesis (500 AU) addresses the clustering of Extreme Trans-Neptunian Objects (ETNOs), the Real-Virtual Dual-Field Theory (RVDT) further predicts an intermediate perturber, designated Planet Y, at 132 AU. Unlike classical N-body simulations that rely on empirical fitting, RVDT utilizes fixed universal constants (ξ=0. 083 AU⁻¹, β=6. 418) to define orbital stability. This letter focuses on a unique corollary of the RVDT framework: the mathematical necessity of a triple-ring system around Planet Y. By solving the extremum condition of the sub-source weight function Sₛub (r), we derive three discrete, stable orbital radii at 3. 2 AU, 7. 6 AU, and 14. 3 AU. These distances are not arbitrary but are physically enforced by the conjugate golden decay field. We urge high-cadence photometric monitoring of the Ophiuchus-Serpens-Libra sector to test this prediction through stellar occultations.
zhongqiang Liu (Sun,) studied this question.
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