Physics – Condensed Matter – Disordered Systems and Neural Networks
Scientific paper
2001-09-18
Physics
Condensed Matter
Disordered Systems and Neural Networks
RevTeX4 style, 7 figures
Scientific paper
10.1140/epje/i2001-10093-7
We investigate hard ellipsoids of revolution in a parameter regime where no long range nematic order is present but already finite size domains are formed which show orientational order. Domain formation leads to a substantial slowing down of a collective rotational mode which separates well from the usual microscopic frequency regime. A dynamic coupling of this particular mode into all other modes provides a general mechanism which explains an excess peak in spectra of molecular fluids. Using molecular dynamics simulation on up to 4096 particles and on solving the molecular mode coupling equation we investigate dynamic properties of the peak and prove its orientational origin.
Allen Michael P.
Latz Arnulf
Letz M.
Schilling Rene
Theenhaus Th.
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