Calculating particle pair potentials from fluid-state pair correlations: Iterative ornstein-zernike inversion

被引:13
作者
Heinen, Marco [1 ]
机构
[1] Univ Guanajuato, Dept Ingn Fis, Div Ciencias & Ingn, Loma Bosque 103, Leon 37150, Mexico
关键词
Monte Carlo simulation; Ornstein-Zernike equation; effective interactions; coarse graining; Iterative Boltzmann Inversion; LENNARD-JONES FLUIDS; CONVERGENCE ACCELERATION; COMPETING INTERACTIONS; CHAIN APPROXIMATION; DYNAMICS; DISPERSIONS; SIMULATIONS; SUSPENSIONS; SYSTEM; MODEL;
D O I
10.1002/jcc.25225
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
An iterative Monte Carlo inversion method for the calculation of particle pair potentials from given particle pair correlations is proposed in this article. The new method, which is best referred to as Iterative Ornstein-Zernike Inversion, represents a generalization and an improvement of the established Iterative Boltzmann Inversion technique (Reith, Putz and Muller-Plathe, J. Comput. Chem. 2003, 24, 1624). Our modification of Iterative Boltzmann Inversion consists of replacing the potential of mean force as an approximant for the pair potential with another, generally more accurate approximant that is based on a trial bridge function in the Ornstein-Zernike integral equation formalism. As an input, the new method requires the particle pair correlations both in real space and in the Fourier conjugate wavenumber space. An accelerated iteration method is included in the discussion, by which the required number of iterations can be greatly reduced below that of the simple Picard iteration that underlies most common implementations of Iterative Boltzmann Inversion. Comprehensive tests with various pair potentials show that the new method generally surpasses the Iterative Boltzmann Inversion method in terms of reliability of the numerical solution for the particle pair potential. (c) 2018 Wiley Periodicals, Inc.
引用
收藏
页码:1531 / 1543
页数:13
相关论文
共 43 条
  • [1] Correlations among colloidal particles confined to a spherical monolayer
    Chávez-Páez, M
    González-Mozuelos, P
    Medina-Noyola, M
    Méndez-Alcaraz, JM
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2003, 119 (14) : 7461 - 7466
  • [2] Structure and effective interactions in parallel monolayers of charged spherical colloids
    Contreras-Aburto, C.
    Mendez-Alcaraz, J. M.
    Castaneda-Priego, R.
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2010, 132 (17)
  • [3] Clustering and dynamics of particles in dispersions with competing interactions: theory and simulation
    Das, Shibananda
    Riest, Jonas
    Winkler, Roland G.
    Gompper, Gerhard
    Dhont, Jan K. G.
    Naegele, Gerhard
    [J]. SOFT MATTER, 2018, 14 (01) : 92 - 103
  • [4] Effective interactions, structure, and isothermal compressibility of colloidal suspensions
    Dijkstra, M
    van Roij, R
    Evans, R
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2000, 113 (11) : 4799 - 4807
  • [5] Testing the relevance of effective interaction potentials between highly-charged colloids in suspension
    Dobnikar, J.
    Castaneda-Priego, R.
    von Gruenberg, H. H.
    Trizac, E.
    [J]. NEW JOURNAL OF PHYSICS, 2006, 8
  • [6] THE SOLUTION OF THE HYPERNETTED-CHAIN APPROXIMATION FOR FLUIDS OF NONSPHERICAL PARTICLES - A GENERAL-METHOD WITH APPLICATION TO DIPOLAR HARD-SPHERES
    FRIES, PH
    PATEY, GN
    [J]. JOURNAL OF CHEMICAL PHYSICS, 1985, 82 (01) : 429 - 440
  • [7] Generalized phase behavior of cluster formation in colloidal dispersions with competing interactions
    Godfrin, P. Douglas
    Valadez-Perez, Nestor E.
    Castaneda-Priego, Ramon
    Wagner, Norman J.
    Liu, Yun
    [J]. SOFT MATTER, 2014, 10 (28) : 5061 - 5071
  • [8] Gotze W., 2009, Complex Dynamics of Glass-Forming Liquids, DOI 10.1093/acprof:oso/9780199235346.001.0001
  • [9] Uncorrelated modes of the non-linear power spectrum
    Hamilton, AJS
    [J]. MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2000, 312 (02) : 257 - 284
  • [10] Hansen J.-P., 2013, Theory of Simple Liquids