From superradiance to collective electromagnetically induced transparency in three-level ensembles

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We investigate the collective dynamics of a three-level ensemble under the Dicke limit, revealing a unified connection between superradiant emission and electromagnetically induced transparency (EIT). Our results show that the transient superradiant burst exhibits the expected peak intensity scaling Math input error, with a universal finite-size correction Math input error that governs the apparent scaling exponent in realistic ensembles. In the stationary regime, collective broadening modifies the EIT response: although it typically enhances absorption, it counterintuitively increases the group velocity, leading to a relative scaling Math input error, even while Math input error. This effect suggests that cooperative interactions fundamentally limit the achievable slow-light delay in dense media. To achieve these results, we derive a representative-atom master equation that quantitatively reproduces both the superradiant and EIT regimes, in excellent agreement with the exact symmetric-subspace dynamics and correctly incorporating collective feedback and Math input error-dependent broadening. This unified framework bridges transient superradiant emission and steady-state quantum interference, with direct implications for slow light, quantum memories, and precision metrology.

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SANCHEZ, H. et al. From superradiance to collective electromagnetically induced transparency in three-level ensembles. Physical Review Applied, New York, v. 25, e 0440621, 2026. DOI: 10.1103/bjmf-j7zv. Disponível em: https://journals.aps.org/prapplied/abstract/10.1103/bjmf-j7zv. Acesso em: 8 set. 2026.