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April 23, 20260 citationsOpen Access

Rheological Vacuum Engineering: Phase Invisibility Model and Optical Cavitation

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ASAlexander Shlyapik

Key Points

  • This study aims to develop a theoretical model for achieving object invisibility through optical cavitation.
  • Developed a mathematical model describing the optical cavitation effect.
  • Utilized ocean viscosity parameters and Shlyapik threshold to derive a photon flow trajectory equation.
  • Proposed a protocol for creating a resonant surface Z-layer to minimize losses.
  • Demonstrated the feasibility of complete object cloaking by controlling vacuum phases.
  • Established a trajectory equation that enhances photon flow-around with minimal dissipative losses.

Abstract

This paper presents the theoretical framework and mathematical model for the “optical cavitation” effect—a method for achieving complete object cloaking by controlling the phase state of the vacuum condensate (ψ-field). Based on the established Ocean viscosity parameters (η = 1. 2 × 10^−15 Pa·s) and the Shlyapik threshold (Ethr = 7. 76 keV), a trajectory equation for photon flow-around is derived. A protocol for generating a resonant surface Z-layer is proposed, minimizing dissipative losses and ensuring adiabatic wavefront restoration.

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Cite This Study

Alexander Shlyapik (2026) studied this question.

synapsesocial.com/papers/69e9b89b85696592c86ebc40https://doi.org/10.5281/zenodo.19684925
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