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Observation of Coulomb-Crystal Formation from Carbon Particles Grown in a Methane Plasma

Japanese Journal of Applied Physics · 1994 · Vol. 33(6A) · pp. L804–L804
Yasuaki HayashiKunihide Tachibana

Abstract

A Coulomb crystal was successfully formed as a result of the growth of spherical and monodisperse carbon particles suspended in a methane plasma. The crystal structure was confirmed to be hexagonal from top- and side-view photographs. The particle growth was monitored by Mie-scattering ellipsometry and correlated with the formation process of the Coulomb crystal. The liquid-to-solid phase transition occurred when particle diameter grew to 1.3 µm, and when the Wigner-Seitz radius was about 90 µm.

nanoparticles nucleation surface interactionsPhase Equilibria and ThermodynamicsElectrohydrodynamics and Fluid DynamicsCrystal (programming language)CoulombWigner crystalRADIUSPlasmaDispersityParticle (ecology)MethaneCarbon fibersMaterials science
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