Abstract
Exciton-exciton recombination in isolated semiconducting single-walled carbon nanotubes was studied using femtosecond transient absorption. Under sufficient excitation to saturate the optical absorption, we observed an abrupt transition between reaction- and diffusion-limited kinetics, arising from reactions between incoherent localized excitons with a finite probability of ∼0.2 per encounter. This represents the first experimental observation of a crossover between classical and critical kinetics in a 1D coalescing random walk, which is a paradigm for the study of nonequilibrium systems. © 2013 American Physical Society.
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CITATION STYLE
Allam, J., Sajjad, M. T., Sutton, R., Litvinenko, K., Wang, Z., Siddique, S., … Brown, T. (2013). Measurement of a reaction-diffusion crossover in exciton-exciton recombination inside carbon nanotubes using femtosecond optical absorption. Physical Review Letters, 111(19). https://doi.org/10.1103/PhysRevLett.111.197401
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