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The Mysterious Inspiral of WASP-12b: Why Obliquity Tides Cannot Drive Orbital Decay

Published 10 Sep 2026 in astro-ph.EP | (2609.11925v1)

Abstract: WASP-12b's orbit is decaying, for unknown reasons. The planet's period is shrinking more rapidly than can be attributed to equilibrium tides or dynamical tides in a main-sequence star. Planetary obliquity tides could be sufficiently dissipative to drive WASP-12b's inspiral, but would also damp the planet's obliquity, halting the decay. Millholland & Laughlin proposed that a nearby, low-mass planet (∼10\sim 10 M<em>⊕<em>\oplus) is maintaining a large obliquity for WASP-12b, sustaining the dissipation. We re-evaluated this hypothesis, finding that the companion must be more massive than originally proposed (≳65\gtrsim 65 M</em>⊕</em>\oplus) to absorb WASP-12b's orbital angular momentum. Radial velocity data allowed us to rule out a companion of this type. Any companions within $3$ AU have K≲14K \lesssim 14 m/s at $95$% confidence.

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