We develop a staged research framework in which physical time is treated not as a primitive external parameter, but as an emergent quantity generated by the quantum dynamical structure of matter-energy configurations. The central working hypothesis is that a physically meaningful temporal increment exists only when state-change distinguishability is both relationally accessible and supported by stable physical records. On this basis, we formulate a Relational Chronometric Principle (RCP) and construct a local chronometric field χℓ(x) from two standard quantum-information-theoretic ingredients: quantum Fisher information and a record-stability factor derived from relative-entropy loss under a calibrated noisy channel (Braunstein Page relational dynamics; chronometric scalar; quantum Fisher information; scalar-tensor EFT; optical clocks; atom interferometry; screened gravity; coarse-graining maps; record stability
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tovi zituny
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tovi zituny (Thu,) studied this question.
www.synapsesocial.com/papers/69e321aa40886becb6540c4e — DOI: https://doi.org/10.5281/zenodo.19616266