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September 21, 2025ACS OmegaOpen Access

Purcell Effect in Epsilon-Near-Zero Microcavities

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Authors

APAli PanahpourJKJussi KelavuoriMHMikko J. Huttunen

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Overview

Analytical analysis reveals improved quality factors in epsilon-near-zero Bragg cavities, suggesting efficient light manipulation.

Key Points

  • Investigating the Purcell effect shows significant scaling for light-matter interactions in epsilon-near-zero microcavities.
  • Comparative analysis indicates that all-dielectric Bragg-reflection microcavities outperform traditional metallic counterparts.
  • Analytical derivations highlight distinct properties of ENZ cavities, specifically the scaling laws for Purcell and quality factors.
  • Frequency domain simulations validate enhanced performance insights into epsilon-near-zero photonic systems design.

Cite This Study

Panahpour et al. (2025) studied this question.

synapsesocial.com/papers/68d46cbf31b076d99fa6889fhttps://doi.org/10.1021/acsomega.5c07448
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Also Consider

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

  1. 1Strong Purcell Effect in All-Dielectric Epsilon-Near-Zero Microcavities2024
  2. 2Photonic Doping of Epsilon‐Near‐Zero Bragg Microcavities2026
  3. 3Nonresonant Magnetic Flux Control Enabling Low‐Loss Epsilon‐Near‐Zero Cavity Antennas2026
  4. 4High-<i>Q</i>, Size-Independent, and Reconfigurable Optical Antennas Embedded in Zero-Index Cavities2025
  5. 5High-Q, size-independent, and reconfigurable optical antennas via zero-index material dispersion engineering2025