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May 15, 20260 citationsOpen Access

Boundary-Modified Density of States and Optical Squeezing in Casimir Cavities: A Proposal for the Fractal Casimir Optical Cavity (FCOC)

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MFMassimiliano Falleri

Key Points

  • This research aims to explore how Casimir boundary conditions can influence optical squeezing by modifying the electromagnetic density of states.
  • Introduced the Fractal Casimir Optical Cavity (FCOC) concept.
  • Developed a perturbative toy model to analyze squeezing dynamics.
  • Conducted a sensitivity analysis and proposed a superconducting cQED analogue for experimental testing.
  • Demonstrated that Casimir boundary conditions can lead to significant modifications in squeezing dynamics.
  • Outlined the theoretical framework for a practical implementation of the FCOC.
  • Provided a robust simulation framework for further testing.

Abstract

Theoretical proposal investigating whether Casimir boundary conditions can modify squeezing dynamics through perturbations of the electromagnetic density of states (DOS). The work introduces the Fractal Casimir Optical Cavity (FCOC), presents a perturbative toy model, sensitivity analysis, and a proposed superconducting cQED analogue for experimental verification. Main preprint: short referee-friendly version. Supplementary files include the extended theoretical version, simulation framework, and repository overview.

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Cite This Study

Massimiliano Falleri (2026) studied this question.

synapsesocial.com/papers/6a06b928e7dec685947abbc5https://doi.org/10.5281/zenodo.20155876
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Also Consider

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

  1. 1Vacuum Mode Structure in Transmissive Casimir Cavities with Quasicrystalline Boundary Conditions: Theory of Photon Propagation at the Fundamental Mode Cutoff2026
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  3. 3Dual chiral density wave induced oscillating Casimir effect2024
  4. 4Cavity-Modified Local Density of States as a Noise-Resilient Stabilizer for Asymmetric Ultrafast Kinetic Channels2026
  5. 5Dual chiral density wave induced oscillating Casimir effect2024 · 5 citations