RESEARCHER BRIEF
Scale Recursion - Sirius Transduction - Primordial Polarity
Kyle Hinton | Exploratory research discussion | September 2026
The three questions
Scale recursion: Can the causally meaningful description of a system depend on scale and predictive horizon? In a constructed branching model, the state count required to retain >=75% effective information fell from ~125 at horizon 1 to 4 at horizons 8 and 16.
Sirius transduction: Could the physically asymmetric Sirius A/B system be modelled as differentiated response channels inside a magnetised interstellar transport network? The system-level filtering/balancing function is speculative; A/B asymmetry, Galactic fields and MHD propagation are real.
Primordial polarity: Can complementary differentiation be defined as a recurring generative operation without merely forcing binary categories onto continuous systems?
Why I am sending it
I am not asking for endorsement of the wider framework. I am looking for technically specific criticism: a fatal physical constraint, a better formalism, a dataset that can test a prediction, or a reason one of the narrower questions is worth pursuing.
Immediate specialist questions
Plasma astrophysics: what coherence and damping limits apply to MHD disturbances over interstellar paths?
Stellar/observational astrophysics: can external disturbances produce measurable phase-, wavelength- or polarisation-dependent changes in an A-type + white-dwarf binary?
Information theory/dynamical systems: how should "causal scale" be defined when the preferred description changes with predictive horizon?
Mathematics: can complementary response modes be discovered without imposing a binary decomposition?
Full release includes methods, calculations, negative results, data filenames, falsification conditions and references.