We propose a numerical scheme based on the Chebyshev pseudo-spectral collocation method for solving the integral and integro-differential equations of the density-functional theory and its dynamic extension. We demonstrate the exponential convergence of our scheme, which typically requires much fewer discretization points to achieve the same accuracy compared to conventional methods. This discretization scheme can also incorporate the asymptotic behavior of the density, which can be of interest in the investigation of open systems. Our scheme is complemented with a numerical continuation algorithm and an appropriate time stepping algorithm, thus constituting a complete tool for an efficient and accurate calculation of phase diagrams and dynamic phenomena. To illustrate the numerical methodology, we consider an argon-like fluid adsorbed on a Lennard-Jones planar wall. First, we obtain a set of phase diagrams corresponding to the equilibrium adsorption and compare our results obtained from different approximations to the hard sphere part of the free energy functional. Using principles from the theory of sub-critical dynamic phase field models, we formulate the time-dependent equations which describe the evolution of the adsorbed film. Through dynamic considerations we interpret the phase diagrams in terms of their stability. Simulations of various wetting and drying scenarios allow us to rationalize the dynamic behavior of the system and its relation to the equilibrium properties of wetting and drying.

1.
R.
Roth
and
A. O.
Parry
,
Mol. Phys.
109
,
1159
(
2011
).
2.
C.
Rascon
and
A. O.
Parry
,
Nature (London)
407
,
986
(
2000
).
3.
A.
Sartori
and
A. O.
Parry
,
J. Phys.: Condens. Matter
14
,
L679
(
2002
).
4.
L. J. D.
Frink
and
A. G.
Salinger
,
J. Chem. Phys.
118
,
7466
(
2003
).
5.
L.
Szybisz
and
S. A.
Sartarelli
,
J. Chem. Phys.
128
,
124702
(
2008
).
6.
T.
Vanderlick
,
L. E.
Scriven
, and
H. T.
Davis
,
J. Chem. Phys.
90
,
2422
(
1989
).
7.
R.
Evans
,
J. Phys.: Condens. Matter
2
,
8989
(
1990
).
8.
E.
Ruckenstein
and
G. O.
Berim
,
Advances in Colloid and Interface Science
154
,
56
(
2010
).
9.
P.
De Gennes
,
Rev. Mod. Phys.
57
,
827
(
1985
).
10.
E.
Ruckenstein
and
G. O.
Berim
,
Adv. Colloid Interface Sci.
157
,
1
(
2010
).
11.
J. W.
Cahn
,
J. Chem. Phys.
66
,
3667
(
1977
).
12.
C.
Ebner
and
W. F.
Saam
,
Phys. Rev. Lett.
38
,
1486
(
1977
).
13.
C.
Domb
and
J.
Lebowitz
,
Phase Transitions and Critical Phenomena
(
Academic
,
1988
), Vol.
12
.
15.
H.
Lowen
,
J. Phys.: Condens. Matter
14
,
11897
(
2002
).
16.
R.
Evans
and
A.
Parry
,
J. Phys.: Condens. Matter
2
,
SA
15
(
1990
).
17.
D.
Bonn
and
D.
Ross
,
Rep. Prog. Phys.
64
,
1085
(
2001
).
18.
P. J.
Marshall
,
M. M.
Szczęśniak
,
J.
Sadlej
,
G.
Chałasiński
,
M. A.
ter Horst
, and
C. J.
Jameson
,
J. Chem. Phys.
104
,
1996
(
1996
).
19.
A.
Chizmeshya
,
M. W.
Cole
, and
Z.
Zaremba
,
J. Low Temp. Phys.
110
,
677
(
1998
).
20.
F.
Ancilotto
and
F.
Toigo
,
Phys. Rev. B
60
,
9019
(
1999
).
21.
G.
Mistura
,
F.
Ancilotto
,
L.
Bruschi
, and
F.
Toigo
,
Phys. Rev. Lett.
82
,
795
(
1999
).
22.
Y.
Fan
and
P.
Monson
,
J. Chem. Phys.
99
,
6897
(
1993
).
23.
Y.
Yu
,
Y.
Li
, and
Y.
Zheng
,
Chin. Phys. Lett.
27
,
037101
(
2010
).
24.
E.
Velasco
and
P.
Tarazona
,
J. Chem. Phys.
91
,
7916
(
1989
).
25.
M. B.
Sweatman
,
Phys. Rev. E
63
,
031102
(
2001
).
26.
S. A.
Sartarelli
and
L.
Szybisz
,
Phys. Rev. E
80
,
052602
(
2009
).
27.
Y.-X.
Yu
,
J. Chem. Phys.
131
,
024704
(
2009
).
28.
S.
Dhawan
,
M. E.
Reimel
,
L. E.
Scriven
, and
H. T.
Davis
,
J. Chem. Phys.
94
,
4479
(
1991
).
29.
R.
Roth
,
J. Phys.: Condens. Matter
22
,
063102
(
2010
).
30.
J. P.
Noworyta
,
D.
Henderson
,
S.
Sokolowsky
, and
K.-Y.
Chan
,
Mol. Phys.
95
,
415
(
1998
).
31.
A. G.
Salinger
and
L. J. D.
Frink
,
J. Chem. Phys.
118
,
7457
(
2003
).
32.
T.
Laurila
,
M.
Pradas
,
A.
Hernández-Machado
, and
T.
Ala-Nissila
,
Phys. Rev. E
78
,
031603
(
2008
).
33.
34.
P.
Hohenberg
and
B. I.
Halperin
,
Rev. Mod. Phys.
49
,
435
(
1977
).
35.
J. S.
Langer
,
Solids Far from Equilibrium
(
Cambridge University Press
,
Cambridge
,
1992
), Chap. 3, pp.
297
363
.
36.
R.
Evans
, “
Density functionals on the theory of nonuniform fluids
,” in
Fundamentals of Inhomogeneous Fluids
(
Dekker
,
New York
,
1992
), p.
85
.
37.
T.
Munakata
,
Aust. J. Phys.
49
,
25
(
1996
).
38.
U. M. B.
Marconi
and
P.
Tarazona
,
J. Phys.: Condens. Matter
12
,
A413
(
2000
).
39.
M.
Rex
and
H.
Lowen
,
Eur. Phys. J. E
28
,
139
(
2009
).
40.
A. J.
Archer
and
R.
Evans
,
J. Chem. Phys.
121
,
4246
(
2004
).
41.
G. K.-L.
Chan
and
R.
Finken
,
Phys. Rev. Lett.
94
,
183001
(
2005
).
42.
A. J.
Archer
,
J. Phys.: Condens. Matter
18
,
5617
(
2006
).
43.
U.
Thiele
,
I.
Vancea
,
A. J.
Archer
,
M. J.
Robbins
,
L.
Frastia
,
A.
Stannard
,
E.
Pauliac-Vaujour
,
C. P.
Martin
,
M. O.
Blunt
, and
P. J.
Moriarty
,
J. Phys.: Condens. Matter
21
,
264016
(
2009
).
44.
J. P.
Boyd
,
Chebyshev and Fourier Spectral Methods
(
Dover
,
2001
).
45.
L. N.
Trefethen
,
Spectral Methods in MATLAB
(
SIAM
,
2000
).
46.
L. N.
Trefethen
,
SIAM Rev.
50
,
67
(
2008
).
47.
N.
Hale
and
L. N.
Trefethen
,
SIAM J. Sci. Comput.
46
,
930
(
2008
).
48.
Theory and Simulation of Hard-Sphere Fluids and Related Systems
,
Lecture Notes in Physics
Vol.
753
, edited by
A.
Mulero
(
Springer
,
Berlin Heidelberg
,
2008
).
49.
J. A.
Barker
and
D.
Henderson
,
J. Chem. Phys.
47
,
4714
(
1967
).
50.
J. D.
Weeks
,
D.
Chandler
, and
H. C.
Anderson
,
J. Chem. Phys.
54
,
5237
(
1971
).
51.
S. A.
Sartarelli
,
L.
Szybisz
, and
I.
Urrutia
,
Phys. Rev. E
79
,
011603
(
2009
).
52.
P.
Tarazona
and
R.
Evans
,
Mol. Phys.
52
,
847
(
1984
).
53.
P.
Tarazona
,
Phys. Rev. A
31
,
2672
(
1985
).
54.
N. F.
Carnahan
and
K. E.
Starling
,
J. Chem. Phys.
51
,
635
(
1969
).
55.
P.
Tarazona
and
R.
Evans
,
Mol. Phys.
47
,
1033
(
1982
).
56.
J.
Winkelmann
,
J. Phys.: Condens. Matter
13
,
4739
(
2001
).
58.
S.
Nordholm
,
M.
Johnson
, and
B. C.
Freasier
,
Aust. J. Phys.
33
,
2139
(
1980
).
59.
G. O.
Berim
and
E.
Ruckenstein
,
J. Chem. Phys.
125
,
164717
(
2006
).
60.
G. O.
Berim
and
E.
Ruckenstein
,
J. Chem. Phys.
129
,
014708
(
2008
).
61.
62.
R.
Roth
,
R.
Evans
,
A.
Lang
, and
G.
Kahl
,
J. Phys.: Condens. Matter
14
,
12063
(
2002
).
64.
C.
Ebner
,
W. F.
Saam
, and
D.
Stroud
,
Phys. Rev. A
14
,
2264
(
1976
).
65.
A. J.
Archer
,
J. Chem. Phys.
130
,
014509
(
2009
).
66.
M.
Rauscher
,
J. Phys.: Condens. Matter
22
,
364109
(
2010
).
67.
S.
Dietrich
,
H. L.
Frisch
, and
A.
Majhofer
,
Z. Phys. B: Condens. Matter
78
,
317
(
1990
).
68.
U. M. B.
Marconi
and
P.
Tarazona
,
J. Chem. Phys.
110
,
8032
(
1999
).
69.
J. A.
Barker
and
D.
Henderson
,
J. Chem. Phys.
76
,
6303
(
1982
).
70.
R.
Baltensperger
,
Appl. Numer. Math.
33
,
143
(
2000
).
71.
J.-P.
Berrut
and
L. N.
Trefethen
,
SIAM Rev.
46
,
501
(
2004
).
72.
P.
Ball
and
R.
Evans
,
J. Chem. Phys.
89
,
4412
(
1988
).
73.
T. W.
Tee
and
L. N.
Trefethen
,
SIAM J. Sci. Comput.
28
,
1798
(
2006
).
74.
A.
Hamraoui
and
M.
Privat
,
Adv. Colloid Interface Sci.
149
,
1
(
2009
).
75.
K. T.
Chu
,
J. Comp. Phys.
228
,
5526
(
2009
).
76.
B.
Krauskopf
,
Numerical Continuation Methods for Dynamical Systems
, edited by
M. O.
Hinke
and
J.
Galn-Vioque
(
Springer
,
2007
).
77.
P.
Tarazona
and
R.
Evans
,
Mol. Phys.
48
,
799
(
1983
).
78.
R.
Evans
and
P.
Tarazona
,
Phys. Rev. A
28
,
1864
(
1983
).
79.
P.
Tarazona
,
U. M. B.
Marconi
, and
R.
Evans
,
Mol. Phys.
60
,
573
(
1987
).
80.
A.
Nold
,
A.
Malijevský
, and
S.
Kalliadasis
,
Phys. Rev. E
84
,
021603
(
2011
).
81.
P.
Tarazona
and
Y.
Rosenfeld
,
Phys. Rev. E
55
,
R4873
(
1997
).
82.
R.
Roth
and
S.
Dietrich
,
Phys. Rev. E
62
,
6926
(
2000
).
83.
L. F.
Shampine
and
M. W.
Reichelt
,
SIAM J. Sci. Comput.
18
,
1
(
1997
).
84.
N.
Savva
,
S.
Kalliadasis
, and
G. A.
Pavliotis
,
Phys. Rev. Lett.
104
,
084501
(
2010
).
85.
N.
Savva
,
G. A.
Pavliotis
, and
S.
Kalliadasis
,
J. Fluid Mech.
672
,
358
(
2011
).
86.
N.
Savva
,
G. A.
Pavliotis
, and
S.
Kalliadasis
,
J. Fluid Mech.
672
,
384
(
2011
).
87.
E. L.
Allgower
and
K.
Georg
,
Introduction to Numerical Continuation Methods
(
Colorado State University
,
1990
).
88.
A.
Dhooge
,
W.
Govaerts
,
Y. A.
Kuznetsov
,
W.
Mestrom
,
A.
Riet
, and
B.
Sautois
, MATCONT and CL MATCONT: Continuation Toolboxes in Matlab, Utrecht University, Netherlands and Universiteit Gent, Belgium,
2006
.
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