TELEPORTATION AS CONTINUOUS STATE TRANSFORMATION

Fuente: Zenodo
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Autor principal: willoughby, samuel james
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2026
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author willoughby, samuel james
author_facet willoughby, samuel james
contents <p>This paper introduces a mechanism‑agnostic theoretical framework for teleportation based on continuous state transformation, mass continuity, and the no‑cloning constraint. Instead of treating teleportation as the relocation or duplication of matter, the model reframes it as an unbroken chain of state evolution from an initial configuration to a final one. Intermediate disturbances are treated as noise that does not affect identity as long as continuity is preserved. A macro‑scale analogy using water phase transitions illustrates how identity can remain intact through dramatic changes in density, interaction rules, and observability. The framework defines the physical constraints any viable teleportation mechanism must obey.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20268310
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle TELEPORTATION AS CONTINUOUS STATE TRANSFORMATION
willoughby, samuel james
teleportation
state continuity
phase‑state transformation
mass continuity
identity preservation
decoherence
no‑cloning theorem
quantum coherence
mechanism‑agnostic models
continuous state evolution
quantum information
open quantum systems
phase transitions
quantum identity
non‑classical states
<p>This paper introduces a mechanism‑agnostic theoretical framework for teleportation based on continuous state transformation, mass continuity, and the no‑cloning constraint. Instead of treating teleportation as the relocation or duplication of matter, the model reframes it as an unbroken chain of state evolution from an initial configuration to a final one. Intermediate disturbances are treated as noise that does not affect identity as long as continuity is preserved. A macro‑scale analogy using water phase transitions illustrates how identity can remain intact through dramatic changes in density, interaction rules, and observability. The framework defines the physical constraints any viable teleportation mechanism must obey.</p>
title TELEPORTATION AS CONTINUOUS STATE TRANSFORMATION
topic teleportation
state continuity
phase‑state transformation
mass continuity
identity preservation
decoherence
no‑cloning theorem
quantum coherence
mechanism‑agnostic models
continuous state evolution
quantum information
open quantum systems
phase transitions
quantum identity
non‑classical states
url https://doi.org/10.5281/zenodo.20268310