Self-equilibration of the radius distribution in self-catalyzed GaAs nanowires

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Abstract

This work addresses the evolution of radius distribution function in self-catalyzed vapor-liquid-solid growth of GaAs nanowires from Ga droplets. Different growth regimes are analyzed depending on the V/III flux ratio. In particular, we find a very unusual selfequilibration regime in which the radius distribution narrows up to a certain stationary radius regardless of the initial size distribution of Ga droplets. This requires that the arsenic vapor flux is larger than the gallium one and that the V/III influx imbalance is compensated by a diffusion flux of gallium adatoms. Approximate analytical solution is compared to the numerical radius distribution obtained by solving the corresponding Fokker-Planck equation by the implicit difference scheme.

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Leshchenko, E. D., Turchina, M. A., & Dubrovskii, V. G. (2016). Self-equilibration of the radius distribution in self-catalyzed GaAs nanowires. In Journal of Physics: Conference Series (Vol. 741). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/741/1/012033

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