Projection, Probability, and Irreversibility in Modal Triplet Theory

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1. Verfasser: Nero, Peter
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2026
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author Nero, Peter
author_facet Nero, Peter
contents <p>We present a unified framework connecting quantum measurement collapse, black hole information loss, and the origin of probability in cosmology within Modal Triplet Theory (MTT). In this framework, effective four-dimensional physics arises as a shadow of deterministic dynamics on a higher configuration space under a generally noninvertible coherent projection. We define admissibility barriers—loci where this projection fails to be stably invertible due to spectral gap closure, projector discontinuity, or basin rearrangement—and prove that crossing such barriers necessarily destroys global reconstructability of the induced four-dimensional dynamics. Quantum measurement collapse and black hole information loss are shown to be distinct physical realizations of this same mechanism. We further show that Born probabilities, Hawking thermal weights, and cosmological initial-condition measures arise from a single basin-measure functional evaluated across different admissibility barriers within the coherent universality class. Inflationary attractors, decoherence, POVM updates, and island constructions are identified as partial shadows that detect basin structure but cannot restore global invertibility. Finally, results on computational irreducibility imply that information loss across some admissibility barriers is principled rather than merely practical.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18262041
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Projection, Probability, and Irreversibility in Modal Triplet Theory
Nero, Peter
Modal Triplet Theory; quantum measurement; probability; irreversibility; black hole information loss; cosmology; projection-based dynamics; quantum foundations
<p>We present a unified framework connecting quantum measurement collapse, black hole information loss, and the origin of probability in cosmology within Modal Triplet Theory (MTT). In this framework, effective four-dimensional physics arises as a shadow of deterministic dynamics on a higher configuration space under a generally noninvertible coherent projection. We define admissibility barriers—loci where this projection fails to be stably invertible due to spectral gap closure, projector discontinuity, or basin rearrangement—and prove that crossing such barriers necessarily destroys global reconstructability of the induced four-dimensional dynamics. Quantum measurement collapse and black hole information loss are shown to be distinct physical realizations of this same mechanism. We further show that Born probabilities, Hawking thermal weights, and cosmological initial-condition measures arise from a single basin-measure functional evaluated across different admissibility barriers within the coherent universality class. Inflationary attractors, decoherence, POVM updates, and island constructions are identified as partial shadows that detect basin structure but cannot restore global invertibility. Finally, results on computational irreducibility imply that information loss across some admissibility barriers is principled rather than merely practical.</p>
title Projection, Probability, and Irreversibility in Modal Triplet Theory
topic Modal Triplet Theory; quantum measurement; probability; irreversibility; black hole information loss; cosmology; projection-based dynamics; quantum foundations
url https://doi.org/10.5281/zenodo.18262041