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April 14, 20260 citationsOpen Access

Energy-Action Threshold Model for Wave Function Collapse: A Nonlinear Dynamical Framework with Experimental Signatures.

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LRLuis Alberto Ratia

Key Points

  • This research aims to develop a model explaining when and how quantum states collapse based on their interactions with the environment.
  • Proposes a phenomenological model for wave function collapse based on accumulated interaction action.
  • Analyzes critical threshold actions and their effects on coherence transitions.
  • Investigates deviations from standard decoherence using visibility curves in interferometric setups.
  • Demonstrates a nonlinear sigmoidal transition in coherence at critical action thresholds.
  • Predicts measurable deviations from standard exponential decoherence.
  • Identifies a 'logistic shoulder' phenomenon in visibility curves as a testable outcome.

Abstract

We propose a phenomenological model for wave function collapse based on accumulated interaction action (A) between a quantum system and its environment. Collapse occurs when the action reaches a critical threshold of order, producing a nonlinear sigmoidal transition in coherence. The framework extends open quantum system dynamics and predicts measurable deviations from standard exponential decoherence, such as a "logistic shoulder" in visibility curves. The model is testable in interferometric setups and provides a physically interpretable mechanism for quantum state reduction.

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Cite This Study

Luis Alberto Ratia (2026) studied this question.

synapsesocial.com/papers/69ddd99ae195c95cdefd6ee3https://doi.org/10.5281/zenodo.19522800
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