Abstract Axial tilt is a widespread characteristic observed among planets and other large celestial bodies. Conventional explanations typically attribute this phenomenon to stochastic collisions and angular momentum transfer during formation. This study proposes a complementary conceptual framework in which gravity is understood not only as a central force, but as an interaction that encompasses the entire system. Once this encompassing interaction becomes effective, an initial coupled interaction emerges, triggering a domino-like chain of mutual influence among system elements. As a result, celestial bodies can no longer behave independently. Axial tilt is interpreted here as a natural and stable geometric outcome of this collective, interdependent system behavior rather than as an accidental deviation.
Ali Caner Yücel (Fri,) studied this question.
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