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root/OpenMD/branches/development/src/nonbonded/NonBondedInteraction.hpp
Revision: 1734
Committed: Tue Jun 5 17:49:36 2012 UTC (13 years, 1 month ago) by jmichalk
File size: 9617 byte(s)
Log Message:
Fixed the Slater overlap integral code, added dVdFq to the self interaction.

File Contents

# User Rev Content
1 gezelter 1502 /*
2     * Copyright (c) 2005 The University of Notre Dame. All Rights Reserved.
3     *
4     * The University of Notre Dame grants you ("Licensee") a
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6     * redistribute this software in source and binary code form, provided
7     * that the following conditions are met:
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9     * 1. Redistributions of source code must retain the above copyright
10     * notice, this list of conditions and the following disclaimer.
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12     * 2. Redistributions in binary form must reproduce the above copyright
13     * notice, this list of conditions and the following disclaimer in the
14     * documentation and/or other materials provided with the
15     * distribution.
16     *
17     * This software is provided "AS IS," without a warranty of any
18     * kind. All express or implied conditions, representations and
19     * warranties, including any implied warranty of merchantability,
20     * fitness for a particular purpose or non-infringement, are hereby
21     * excluded. The University of Notre Dame and its licensors shall not
22     * be liable for any damages suffered by licensee as a result of
23     * using, modifying or distributing the software or its
24     * derivatives. In no event will the University of Notre Dame or its
25     * licensors be liable for any lost revenue, profit or data, or for
26     * direct, indirect, special, consequential, incidental or punitive
27     * damages, however caused and regardless of the theory of liability,
28     * arising out of the use of or inability to use software, even if the
29     * University of Notre Dame has been advised of the possibility of
30     * such damages.
31     *
32     * SUPPORT OPEN SCIENCE! If you use OpenMD or its source code in your
33     * research, please cite the appropriate papers when you publish your
34     * work. Good starting points are:
35     *
36     * [1] Meineke, et al., J. Comp. Chem. 26, 252-271 (2005).
37     * [2] Fennell & Gezelter, J. Chem. Phys. 124, 234104 (2006).
38     * [3] Sun, Lin & Gezelter, J. Chem. Phys. 128, 24107 (2008).
39 gezelter 1665 * [4] Kuang & Gezelter, J. Chem. Phys. 133, 164101 (2010).
40     * [5] Vardeman, Stocker & Gezelter, J. Chem. Theory Comput. 7, 834 (2011).
41 gezelter 1502 */
42    
43     #ifndef NONBONDED_NONBONDEDINTERACTION_HPP
44     #define NONBONDED_NONBONDEDINTERACTION_HPP
45    
46     #include "types/AtomType.hpp"
47     #include "math/SquareMatrix3.hpp"
48    
49     using namespace std;
50     namespace OpenMD {
51    
52     /**
53     * The InteractionFamily enum.
54     *
55     * This is used to sort different types of non-bonded interaction
56     * and to prevent multiple interactions in the same family from
57     * being applied to any given pair of atom types.
58     */
59     enum InteractionFamily {
60 gezelter 1582 NO_FAMILY = 0, /**< No family defined */
61     VANDERWAALS_FAMILY = 1, /**< Long-range dispersion and short-range pauli repulsion */
62     ELECTROSTATIC_FAMILY = 2, /**< Coulombic and point-multipole interactions */
63     METALLIC_FAMILY = 3, /**< Transition metal interactions involving electron density */
64     HYDROGENBONDING_FAMILY = 4,/**< Short-range directional interactions */
65     N_INTERACTION_FAMILIES = 5
66 gezelter 1502 };
67    
68 gezelter 1554 typedef Vector<RealType, N_INTERACTION_FAMILIES> potVec;
69    
70 gezelter 1502 /**
71     * The InteractionData struct.
72     *
73 gezelter 1554 * This is used to pass pointers to data to specific non-bonded
74     * interactions for force calculations. Not all of the struct
75     * members are utilized by any given interaction.
76 gezelter 1502 */
77     struct InteractionData {
78 gezelter 1571 pair<AtomType*, AtomType*> atypes; /**< pair of atom types interacting */
79 gezelter 1554 Vector3d* d; /**< interatomic vector (already wrapped into box) */
80     RealType* rij; /**< interatomic separation */
81     RealType* r2; /**< square of rij */
82     RealType* rcut; /**< cutoff radius for this interaction */
83 gezelter 1583 bool shiftedPot; /**< shift the potential up inside the cutoff? */
84     bool shiftedForce; /**< shifted forces smoothly inside the cutoff? */
85 gezelter 1554 RealType* sw; /**< switching function value at rij */
86     int* topoDist; /**< topological distance between atoms */
87 gezelter 1587 bool excluded; /**< is this excluded from *direct* pairwise interactions? (some indirect interactions may still apply) */
88 gezelter 1554 RealType* vdwMult; /**< multiplier for van der Waals interactions */
89     RealType* electroMult; /**< multiplier for electrostatic interactions */
90     potVec* pot; /**< total potential */
91     RealType* vpair; /**< pair potential */
92 gezelter 1711 bool doParticlePot; /**< should we bother with the particle pot? */
93 gezelter 1575 RealType* particlePot1; /**< pointer to particle potential for atom1 */
94     RealType* particlePot2; /**< pointer to particle potential for atom2 */
95 gezelter 1554 Vector3d* f1; /**< force between the two atoms */
96 gezelter 1575 Mat3x3d* eFrame1; /**< pointer to electrostatic frame for atom 1 */
97     Mat3x3d* eFrame2; /**< pointer to electrostatic frame for atom 2 */
98 gezelter 1554 RotMat3x3d* A1; /**< pointer to rotation matrix of first atom */
99     RotMat3x3d* A2; /**< pointer to rotation matrix of second atom */
100     Vector3d* t1; /**< pointer to torque on first atom */
101     Vector3d* t2; /**< pointer to torque on second atom */
102     RealType* rho1; /**< total electron density at first atom */
103     RealType* rho2; /**< total electron density at second atom */
104 gezelter 1575 RealType* frho1; /**< density functional at first atom */
105     RealType* frho2; /**< density functional at second atom */
106     RealType* dfrho1; /**< derivative of functional for atom 1 */
107     RealType* dfrho2; /**< derivative of functional for atom 2 */
108 gezelter 1721 RealType* flucQ1; /**< fluctuating charge on atom1 */
109     RealType* flucQ2; /**< fluctuating charge on atom2 */
110     RealType* dVdFQ1; /**< fluctuating charge force on atom1 */
111     RealType* dVdFQ2; /**< fluctuating charge force on atom2 */
112     Vector3d* eField1; /**< pointer to electric field on first atom */
113     Vector3d* eField2; /**< pointer to electric field on second atom */
114 gezelter 1587 RealType* skippedCharge1; /**< charge skipped on atom1 in pairwise interaction loop with atom2 */
115     RealType* skippedCharge2; /**< charge skipped on atom2 in pairwise interaction loop with atom1 */
116 gezelter 1502 };
117 gezelter 1545
118 gezelter 1502 /**
119 gezelter 1545 * The SelfData struct.
120 gezelter 1502 *
121 gezelter 1554 * This is used to pass pointers to data for the self-interaction or
122     * derived information on a single atom after a pass through all
123     * other interactions. This is used by electrostatic methods that
124     * have long-range corrections involving interactions with a medium
125     * or a boundary and also by specific metal interactions for
126     * electron density functional calculations. Not all of the struct
127     * members are utilized by any given self interaction.
128 gezelter 1502 */
129 gezelter 1545 struct SelfData {
130 gezelter 1575 AtomType* atype; /**< pointer to AtomType of the atom */
131     Mat3x3d* eFrame; /**< pointer to electrostatic frame for atom */
132     RealType* skippedCharge;/**< charge skipped in pairwise interaction loop */
133     potVec* pot; /**< total potential */
134 gezelter 1711 bool doParticlePot; /**< should we bother with the particle pot? */
135 gezelter 1575 RealType* particlePot; /**< contribution to potential from this particle */
136     Vector3d* t; /**< pointer to resultant torque on atom */
137     RealType* rho; /**< electron density */
138     RealType* frho; /**< value of density functional for atom */
139     RealType* dfrhodrho; /**< derivative of density functional for atom */
140 jmichalk 1734 RealType* flucQ; /**< current value of atom's fluctuating charge */
141     RealType* dVdFQ; /**< fluctuating charge derivative */
142 gezelter 1502 };
143    
144    
145     /**
146     * The basic interface for non-bonded interactions.
147     */
148     class NonBondedInteraction {
149     public:
150     NonBondedInteraction() {}
151     virtual ~NonBondedInteraction() {}
152 gezelter 1536 virtual void calcForce(InteractionData &idat) = 0;
153 gezelter 1502 virtual InteractionFamily getFamily() = 0;
154 gezelter 1545 virtual RealType getSuggestedCutoffRadius(pair<AtomType*, AtomType*> atypes) = 0;
155 gezelter 1502 virtual string getName() = 0;
156     };
157    
158     /**
159     * The basic interface for van der Waals interactions.
160     */
161     class VanDerWaalsInteraction : public NonBondedInteraction {
162     public:
163     VanDerWaalsInteraction() : NonBondedInteraction() { }
164     virtual ~VanDerWaalsInteraction() {}
165     virtual InteractionFamily getFamily() {return VANDERWAALS_FAMILY;}
166     };
167    
168     /**
169     * The basic interface for electrostatic interactions.
170     */
171     class ElectrostaticInteraction : public NonBondedInteraction {
172     public:
173     ElectrostaticInteraction() : NonBondedInteraction() { }
174     virtual ~ElectrostaticInteraction() {}
175 gezelter 1545 virtual void calcSelfCorrection(SelfData &sdat) = 0;
176 gezelter 1536 virtual InteractionFamily getFamily() {return ELECTROSTATIC_FAMILY;}
177 gezelter 1502 };
178    
179     /**
180     * The basic interface for metallic interactions.
181     */
182     class MetallicInteraction : public NonBondedInteraction {
183     public:
184     MetallicInteraction() : NonBondedInteraction() { }
185     virtual ~MetallicInteraction() {}
186 gezelter 1545 virtual void calcDensity(InteractionData &idat) = 0;
187     virtual void calcFunctional(SelfData &sdat) = 0;
188 gezelter 1502 virtual InteractionFamily getFamily() {return METALLIC_FAMILY;}
189     };
190    
191     /**
192     * The basic interface for hydrogen bonding interactions.
193     */
194     class HydrogenBondingInteraction : public NonBondedInteraction {
195     public:
196     HydrogenBondingInteraction() : NonBondedInteraction() { }
197     virtual ~HydrogenBondingInteraction() {}
198     virtual InteractionFamily getFamily() {return HYDROGENBONDING_FAMILY;}
199     };
200    
201     } //end namespace OpenMD
202     #endif

Properties

Name Value
svn:eol-style native
svn:executable *