git-svn-id: svn://svn.icms.temple.edu/lammps-ro/trunk@962 f3b2605a-c512-4ea7-a41b-209d697bcdaa
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doc/Eqs/pair_airebo.tex
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doc/Eqs/pair_airebo.tex
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\documentclass[12pt]{article}
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\begin{document}
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$$
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E = \frac{1}{2} \sum_i \sum_{j \neq i}
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\left[ E^{REBO}_{ij} + E^{LJ}_{ij} +
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\sum_{k \neq i,j} \sum_{l \neq i,j,k} E^{TORSION}_{kijl} \right]
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$$
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\end{document}
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@ -31,12 +31,13 @@ GranFlow for granular materials.
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are being worked on; some haven't been implemented because of lack of
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time or interest; others are just a lot of work!
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</P>
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<UL><LI>Monte Carlo bond-swapping for polymers (was in Fortran LAMMPS)
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<UL><LI>more complete per-atom energy and stress computations
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<LI>Monte Carlo bond-swapping for polymers (was in Fortran LAMMPS)
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<LI>torsional shear boundary conditions and temperature calculation
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<LI>NPT with changing box shape (Parinello-Rahman)
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<LI>bond creation potentials
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<LI>long-range point dipole solver
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<LI>REBO bond-order potential
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<LI>charge equilibration
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<LI>ReaxFF force field from Bill Goddard's group
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</UL>
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<HR>
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@ -28,12 +28,13 @@ These are new features we'd like to eventually add to LAMMPS. Some
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are being worked on; some haven't been implemented because of lack of
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time or interest; others are just a lot of work!
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more complete per-atom energy and stress computations
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Monte Carlo bond-swapping for polymers (was in Fortran LAMMPS)
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torsional shear boundary conditions and temperature calculation
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NPT with changing box shape (Parinello-Rahman)
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bond creation potentials
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long-range point dipole solver
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REBO bond-order potential
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charge equilibration
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ReaxFF force field from Bill Goddard's group :ul
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:line
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@ -129,9 +129,10 @@ commands)
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<LI> dihedral potentials: harmonic, CHARMM, multi-harmonic, helix, class 2 (COMPASS), OPLS
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<LI> improper potentials: harmonic, cvff, class 2 (COMPASS)
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<LI> hybrid potentials: multiple pair, bond, angle, dihedral, improper potentials can be used in one simlulation
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<LI> overlayed potentials: multiple pair potentials can be superposed
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<LI> polymer potentials: all-atom, united-atom, bead-spring, breakable
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<LI> water potentials: TIP3P, TIP4P, SPC
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<LI> long-range Coulombics: Ewald, PPPM (similar to particle-mesh Ewald)
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<LI> long-range Coulombics and dispersion: Ewald, PPPM (similar to particle-mesh Ewald), Ewald/N for long-range Lennard-Jones
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<LI> CHARMM, AMBER, OPLS force-field compatibility
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</UL>
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<H4>Creation of atoms:
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@ -181,8 +182,10 @@ commands)
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<UL><LI> log file of thermodynanmic info
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<LI> text dump files of atom coords, velocities, other per-atom quantities
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<LI> binary restart files
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<LI> per-atom energy, stress, centro-symmetry parameter
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<LI> per-atom quantities (energy, stress, centro-symmetry parameter, etc)
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<LI> user-defined system-wide (log file) or per-atom (dump file) calculations
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<LI> spatial and time averaging of per-atom quantities
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<LI> time averaging of system-wide quantities
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<LI> atom snapshots in native, XYZ, XTC, DCD formats
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</UL>
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<H4>Pre- and post-processing:
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@ -130,9 +130,11 @@ commands)
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improper potentials: harmonic, cvff, class 2 (COMPASS)
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hybrid potentials: multiple pair, bond, angle, dihedral, improper \
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potentials can be used in one simlulation
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overlayed potentials: multiple pair potentials can be superposed
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polymer potentials: all-atom, united-atom, bead-spring, breakable
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water potentials: TIP3P, TIP4P, SPC
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long-range Coulombics: Ewald, PPPM (similar to particle-mesh Ewald)
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long-range Coulombics and dispersion: Ewald, \
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PPPM (similar to particle-mesh Ewald), Ewald/N for long-range Lennard-Jones
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CHARMM, AMBER, OPLS force-field compatibility :ul
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Creation of atoms: :h4
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@ -178,8 +180,10 @@ Output: :h4
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log file of thermodynanmic info
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text dump files of atom coords, velocities, other per-atom quantities
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binary restart files
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per-atom energy, stress, centro-symmetry parameter
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per-atom quantities (energy, stress, centro-symmetry parameter, etc)
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user-defined system-wide (log file) or per-atom (dump file) calculations
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spatial and time averaging of per-atom quantities
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time averaging of system-wide quantities
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atom snapshots in native, XYZ, XTC, DCD formats :ul
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Pre- and post-processing: :h4
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