Tailoring and enhancing spontaneous two-photon emission using resonant plasmonic nanostructures

Управление и усиление спонтанного двухфотонного излучения с помощью резонансных плазмонных наноструктур
Alexander N. Poddubny, Pavel Ginzburg, Pavel A. Belov, Anatoly V. Zayats, Yuri S. Kivshar
2012-09-20

metallic nanoparticlesresonant plasmonic nanostructuresspontaneous two-photon emissionsurface-plasmon resonancestwo-photon Purcell enhancement
The rate of spontaneous emission is known to depend on the environment of a emitter, and the enhancement of one-photon emission in a resonant cavity is known as the Purcell effect. Here we develop a theory of spontaneous two-photon emission for a general electromagnetic environment including inhomogeneous dispersive and absorptive media. This theory is used to evaluate the two-photon Purcell enhancement in the vicinity of metallic nanoparticles and demonstrates that the surface-plasmon resonances supported by these particles can increase the emission rate by more than two orders of magnitude. The control over two-photon Purcell enhancement given by tailored nanostructured environments could provide an emitter with any desired spectral response and may serve as an ultimate route for designing light sources with novel properties.
1
A general theory of spontaneous two-photon emission is developed for inhomogeneous, dispersive, and absorptive electromagnetic environments.
2
Surface-plasmon resonances can enhance spontaneous two-photon emission rates by more than two orders of magnitude.
3
Tailored plasmonic nanostructures can control the spectral response of two-photon emitters and enable light sources with novel properties.
4
The theory evaluates two-photon Purcell enhancement near metallic nanoparticles supporting surface-plasmon resonances.

spontaneous two-photon emission near resonant plasmonic nanostructures, particularly metallic nanoparticles

two-photon Purcell enhancement and spectral control of the emission rate induced by surface-plasmon resonances in tailored electromagnetic environments

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Publication Date
2012-09-20
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Authors
Alexander N. Poddubny
Pavel Ginzburg
Pavel A. Belov
Anatoly V. Zayats
Yuri S. Kivshar
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