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April 7, 20260 citationsOpen Access

Stochastic Rupture as a Bekenstein-Bounded Collapse Mechanism: Testing Informational Origin of Time Dilation

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GZGUILHERME ZAMBUZI

Key Points

  • The research aims to explore how proper time emerges and how information affects wavefunction collapse in quantum systems.
  • Proposed model involves calculating local sampling rates and examining its implications on wavefunction behavior.
  • Predicted interactions of superpositions that exceeds the Bekenstein bound.
  • Designed experiments utilizing next-generation matter-wave interferometers and optomechanical platforms for testing.
  • The model reproduces General Relativity in low-entropy scenarios.
  • Presents predictions of abnormal decoherence for significant quantum superpositions with specific entropy levels.

Abstract

We propose a falsifiable model where proper time emerges from a finite local sampling rate N(x) = Ilocal/IPlanck, and wavefunction collapse occurs when a branch’sinformation exceeds the Bekenstein bound. The model recovers General Relativity inthe low-entropy limit and predicts anomalous decoherence for massive superpositionswith SvN ≳ 0.1 · IBek. A concrete experimental test is proposed using next-generationmatter-wave interferometers, along with a near-term laboratory suggestion using optomechanical platforms.

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Cite This Study

GUILHERME ZAMBUZI (2026) studied this question.

synapsesocial.com/papers/69d49fa9b33cc4c35a22824ehttps://doi.org/10.5281/zenodo.19432987
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