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February 17, 2026Open Access

Complex Time and Quantum Coherence: a reading of Wheeler's Delayed‑Choice Experiment (v5)

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Authors

GRGael Ronsyn

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Overview

This analysis proposes a geometric model of quantum coherence in light of delayed-choice experiments, suggesting new insights into temporal effects.

Key Points

  • To explore a geometric interpretation of Wheeler’s delayed-choice experiment through a complex time framework.
  • Introduced a complex representation of time (T=t−iτ) to the delayed-choice experiment.
  • Analyzed the impact of internal rotation on quantum coherence and interference.
  • Examined how the choice to alter the interferometer affects quantum phase without retrocausality.
  • The proposed model indicated that the choice influences the imaginary-time component.
  • Interference fringes appear or disappear due to a geometric effect of internal rotation.
  • The findings suggest that late decisions can affect observed outcomes without retrocausal implications.

Cite This Study

Gael Ronsyn (2025) studied this question.

synapsesocial.com/papers/699405774e9c9e835dfd64fehttps://doi.org/10.5281/zenodo.18646936
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Configuration-Dependent Complex Time in Delayed-Choice Interferometry2025
  2. 2Complex time as a unified geometric structure: from quantum coherence to cosmological dynamics(UT1)2026
  3. 3Wave-Particle Realism in Quantum-Controlled Interferometers Assisted by Entanglement2025
  4. 4Delayed-Choice Phenomena in the Projection Evolution Model2026
  5. 5Entangled in Spacetime2024