Phase Coherence as a Control Axis in Bipartite Quantum Correlations: A Gate-Formalism Perspective on Entanglement Visibility (Paper I/VII)

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Autore principale: Zander, Fabio Luigi
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2026
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author Zander, Fabio Luigi
author_facet Zander, Fabio Luigi
contents <h3><em>Systematic analysis of a parametrized two-qubit system demonstrating that phase coherence functions as a physical resource governing entanglement visibility. </em></h3> <p><em>The differential correlation <strong>Δ⟨σx⊗σx⟩ </strong>oscillates with relative phase <strong>φ</strong>, while Wootters concurrence <strong>C = |sin</strong> <strong>2γ|</strong> remains phase-invariant. Results are framed within the</em> <strong>Δ-Gate Formalism</strong>, <em>where each measurement constitutes a coherence-dependent transition operator. The parametrization maps directly onto <strong>tt̄ </strong>spin correlations at the</em> <strong>LHC</strong>, <em><strong>yielding three falsifiable predictions</strong></em> testable with <strong>ATLAS/CMS</strong> <strong>Run 3 data.</strong></p> <p><strong>Paper I of VII in the Δ-Gate theoretical core. Part of the Δ-Gate Formalism (DOI: 10.5281/zenodo.19103765).</strong></p> <p> </p>
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spellingShingle Phase Coherence as a Control Axis in Bipartite Quantum Correlations: A Gate-Formalism Perspective on Entanglement Visibility (Paper I/VII)
Zander, Fabio Luigi
phase coherence
entanglement visibility
concurrence
two-qubit system
gate formalism
tt-bar spin correlations
LHC
ATLAS
CMS
delta-gate
<h3><em>Systematic analysis of a parametrized two-qubit system demonstrating that phase coherence functions as a physical resource governing entanglement visibility. </em></h3> <p><em>The differential correlation <strong>Δ⟨σx⊗σx⟩ </strong>oscillates with relative phase <strong>φ</strong>, while Wootters concurrence <strong>C = |sin</strong> <strong>2γ|</strong> remains phase-invariant. Results are framed within the</em> <strong>Δ-Gate Formalism</strong>, <em>where each measurement constitutes a coherence-dependent transition operator. The parametrization maps directly onto <strong>tt̄ </strong>spin correlations at the</em> <strong>LHC</strong>, <em><strong>yielding three falsifiable predictions</strong></em> testable with <strong>ATLAS/CMS</strong> <strong>Run 3 data.</strong></p> <p><strong>Paper I of VII in the Δ-Gate theoretical core. Part of the Δ-Gate Formalism (DOI: 10.5281/zenodo.19103765).</strong></p> <p> </p>
title Phase Coherence as a Control Axis in Bipartite Quantum Correlations: A Gate-Formalism Perspective on Entanglement Visibility (Paper I/VII)
topic phase coherence
entanglement visibility
concurrence
two-qubit system
gate formalism
tt-bar spin correlations
LHC
ATLAS
CMS
delta-gate
url https://doi.org/10.5281/zenodo.19592030