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May 2, 2026Open Access

Toward Testable Signatures of Emergent Vacuum Response: Quantitative Predictions for Asymmetric Electromagnetic Resonators

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Authors

ESErick Sangalang

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Overview

Randomized trial demonstrates experimental predictions for forces in electromagnetic resonators, indicating potential new insights into vacuum interactions.

Key Points

  • This work aims to establish a framework for testing predictions related to asymmetric electromagnetic resonators and their potential residual forces.
  • Introduced effective susceptibility parameter and asymmetry factor for modeling stress imbalances.
  • Derived quantitative scaling relations predicting forces in the nanonewton range.
  • Outlined an experimental approach using high-Q resonators and precision force measurement techniques.
  • Predicted forces in the range of 1–100 nN, with a central estimate of 5–20 nN under laboratory conditions.
  • Established that null results at or below this sensitivity can constrain the proposed model.
  • Addressed systematic errors to enhance experimental accuracy.

Cite This Study

Erick Sangalang (2026) studied this question.

synapsesocial.com/papers/69f594ca71405d493afffabchttps://doi.org/10.5281/zenodo.19931545
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