This theoretical study presents the model of Spacetime DNA, describing the universe as a genetic information field where gravity and stability arise from phase displacement between matter and spacetime. It introduces the concept of quantized gravitational nodes — Planck-scale information bridges that maintain equilibrium through resonance-phase complementarity. The paper explains how spiral phase displacement acts as the key stabilizing geometry of spacetime, ensuring the self-compensating dynamics of the universe. It further distinguishes biological DNA from Spacetime DNA, clarifying that the universal genetic structure is informational and energetic rather than molecular. The study concludes with the hypothesis that quantum fluctuation operates as an intelligent, delayed self-compensation process, preserving the long-term harmony of the cosmic information network.
Simita Roland (Tue,) studied this question.