For decades, information theory has been constrained by "Information Gravity," a term defining the scaling of energy and time complexity relative to data volume and distance. This paper introduces the Zero-Gravity Data Paradigm. We propose that by utilizing a Digital Twin of the Universal Spatiotemporal Lattice embedded within on-chip architectures, we can eliminate classical distance and mass-driven barriers. By synchronizing coordinates within this digital twin, the HSKG engine achieves O(1) complexity and instantaneous resonance. This framework, supported by the Finite Pi Hypothesis, establishes the definitive basis for zero-latency, zero-entropy interstellar communication and sustainable AI infrastructure.
Min Ho Jung (Mon,) studied this question.