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Control and Dynamic Competition of Bright and Dark Lasing States in Active Nanoplasmonic Metamaterials (1112.4367v2)
Published 19 Dec 2011 in physics.optics, cond-mat.mes-hall, cond-mat.mtrl-sci, and physics.comp-ph
Abstract: Active nanoplasmonic metamaterials support bright and dark modes that compete for gain. Using a Maxwell-Bloch approach incorporating Langevin noise we study the lasing dynamics in an active nano-fishnet structure. We report that lasing of the bright negative-index mode is possible if the higher-Q dark mode is discriminated by gain, spatially or spectrally. The nonlinear competition during the transient phase is followed by steady-state emission where bright and dark modes can coexist. We analyze the influence of pump intensity and polarization and explore methods for mode control.
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