Theory of lasing action in plasmonic crystals

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Abstract

We theoretically investigate lasing action in plasmonic crystals incorporating optically pumped four-level gain media. By using detailed simulations based on a time-domain generalization of the finite-element method, we show that the excitation of dark plasmonic resonances (via the gain medium) enables accessing the optimal lasing characteristics of the considered class of systems. Moreover, our study reveals that, in general, arrays of nanowires feature lower lasing thresholds and larger slope efficiencies than those corresponding to periodic arrays of subwavelength apertures. These findings are of relevance for further engineering of active devices based on plasmonic crystals.

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Cuerda, J., Rüting, F., García-Vidal, F. J., & Bravo-Abad, J. (2015). Theory of lasing action in plasmonic crystals. Physical Review B - Condensed Matter and Materials Physics, 91(4). https://doi.org/10.1103/PhysRevB.91.041118

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