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Phase Transitions, Structures and Quantum Effects in Nanosystems

M. Dreher, D. Fischer, K. Franzrahe, P. Henseler, J. Hoffmann, W. Strepp and P. Nielaba
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M. Dreher: University of Konstanz, Physics Department (Theory)
D. Fischer: University of Konstanz, Physics Department (Theory)
K. Franzrahe: University of Konstanz, Physics Department (Theory)
P. Henseler: University of Konstanz, Physics Department (Theory)
J. Hoffmann: University of Konstanz, Physics Department (Theory)
W. Strepp: University of Konstanz, Physics Department (Theory)
P. Nielaba: University of Konstanz, Physics Department (Theory)

A chapter in High Performance Computing in Science and Engineering ’02, 2003, pp 168-180 from Springer

Abstract: Abstract Phase transitions, structures and quantum effects in Nanostructures are studied by path integral Monte Carlo-, Molecular Dynamics- and Car-Parrinello methods. We present results of our computations on pore condensates, reentrance phenomena of systems in external fields, atomic wires and quantum-spin-fluids.

Keywords: Quantum Effect; Quantum Disk; Nanometer Length Scale; Harmonic Interaction; Bond Orientational Order (search for similar items in EconPapers)
Date: 2003
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Persistent link: https://EconPapers.repec.org/RePEc:spr:sprchp:978-3-642-59354-3_14

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DOI: 10.1007/978-3-642-59354-3_14

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