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March 6, 20260 citationsOpen Access

Dynamical Localized Wave Packet Theory (DLWPT): A Coherence-Based Generalization of Schrodinger Theory

EAEric Aboagye Amankwah

Key Points

  • To present a generalization of quantum mechanics through the Dynamical Localized Wave Packet Theory that incorporates deterministic evolution.
  • Introduced a framework based on multi-modal temporal evolution
  • Analyzed the emergence of observable behaviors from slow-envelope and high-frequency branches
  • Examined the internal structure of time within the theory
  • The theory allows for deterministic multi-modal evolution in quantum systems
  • Observable quantum behavior is derived from the slow-envelope branch
  • Coherent stability is ensured by the high-frequency gapped branch

Abstract

Nonrelativistic DLWPT generalizes standard quantum mechanics by introducing deterministic, multi-modal temporal evolution. Observable quantum behavior emerges naturally from the slow-envelope branch, while a high-frequency gapped branch ensures coherent stability. Time itself exhibits internal structure, and the theory provides a concrete framework for layered dynamics bridging low-energy quantum mechanics and deeper coherence phenomena.

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Cite This Study

Eric Aboagye Amankwah (2026) studied this question.

synapsesocial.com/papers/69aa7037531e4c4a9ff59c64https://doi.org/10.5281/zenodo.18857712
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