Structure and thermodynamic properties of simple coulomb systems간단한 쿨롱계의 구조와 열역학적 성질

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dc.contributor.advisorJhon, Mu-Shik-
dc.contributor.advisor전무식-
dc.contributor.authorLee, Jae-Weon-
dc.contributor.author이재원-
dc.date.accessioned2011-12-13T04:26:09Z-
dc.date.available2011-12-13T04:26:09Z-
dc.date.issued1994-
dc.identifier.urihttp://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=68921&flag=dissertation-
dc.identifier.urihttp://hdl.handle.net/10203/31379-
dc.description학위논문(박사) - 한국과학기술원 : 화학과, 1994.2, [ viii, 67 p. ]-
dc.description.abstractWe have extended a recent perturbation theory [J. Chem. Phys. 82, 414 (1985); 84, 4547 (1986)] for nonionic systems to the one-component plasma (OCP). Characteristic features of the theory are its ability to both fluids and solids and the use of a reference potential whose repulsive range shrinks with density. Based on the computed thermodynamic data, we have developed a simple alternative (optimized hard-sphere) model, whose Helmholtz free energy is a sum of the Helmholtz free energy of the hard-sphere reference system and the Madelung energy of a fcc lattice. Comparison with available Monte Carlo and other theoretical results shows that the optimized hard-sphere model gives reliable solid (fcc) and fluid properties. The theory predicts that the fcc solid will melt at the Coulomb coupling parameter $\Gamma{m}$ =208 versus Helfer et al.``s [J. Stat. Phys. 37, 577 (1984)] Monte Carlo value of 196. This difference is due to a small difference (0.1\%) in the computed excess free energy. The computed internal energy can be accurately fitted by an analytic form. Its two leading terms (for the fluid) are $-0.899488\Gamma + 1.27297\Gamma^{1/4}$, in close agreement with Slattery et al.``s [Phys. Rev. A 21, 2087 (1980); 26, 2255 (1982)] empirical fit to their Monte Carlo data. We conclude that the hard-sphere perturbation theory is applicable to a long-range repulsive system, such as the OCP, so long as the hard-sphere diameter is judiciously chosen by using a density-dependent reference potential. The equilibrium properties of charged hard spheres in a uniform neutralizing background depend on two independent parameters : the Coulomb coupling constant of the one-component plasma and the packing fraction of the hard spheres. The thermodynamic quantities such as excess Helmholtz free energy, excess internal energy, and compressibility factor are calculated from the hard-sphere perturbation theory and the optimized hard-sphere model of charged hard spheres for fluids. The...eng
dc.languageeng-
dc.publisher한국과학기술원-
dc.titleStructure and thermodynamic properties of simple coulomb systems-
dc.title.alternative간단한 쿨롱계의 구조와 열역학적 성질-
dc.typeThesis(Ph.D)-
dc.identifier.CNRN68921/325007-
dc.description.department한국과학기술원 : 화학과, -
dc.identifier.uid000775111-
dc.contributor.localauthorJhon, Mu-Shik-
dc.contributor.localauthor전무식-
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CH-Theses_Ph.D.(박사논문)
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