Physical Review Letters · 2013 · 91 citations · 25 references
The heat transport mediated by near-field interactions in networks of plasmonic nanostructures is shown to be analogous to a generalized random walk process. The existence of superdiffusive regimes is demonstrated both in linear ordered chains and in three-dimensional random networks by analyzing the asymptotic behavior of the corresponding probability distribution function. We show that the spread of heat in these networks is described by a type of Lévy flight. The presence of such anomalous heat-transport regimes in plasmonic networks opens the way to the design of a new generation of composite materials able to transport heat faster than the normal diffusion process in solids.
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Electromagnetic energy transport via linear chains of silver nanoparticles
Michael Quinten, A. Leitner, Joachim R. Krenn et al. · Optics Letters · 1998 · 1K citations