Simulations are reported of a highly tetrahedral amorphous carbon netw
ork at a density of 2.9 g/cm(3) using Car-Parrinello first principles
molecular dynamics. The network was generated by cooling a liquid carb
on sample of 64 atoms to form an amorphous structure. The simulated st
ructure is in good agreement with recent neutron diffraction data and
contains 65% fourfold- and 35% threefold-coordinated carbon sites. Thr
ee- and four-membered rings are present in the structure and give the
network an unusual topology. Evidence from neutron diffraction and org
anic chemistry is shown to support the existence of these ring structu
res, which resemble the carbon compounds cyclopropane and cyclobutane.
Two additional networks were produced using different cooling rates.
It was found that the number of fourfold sites decreased as the coolin
g time increased. This result has implications for the interpretation
of experiments and models of how tetrahedral amorphous carbon is forme
d.