forked from lijiext/lammps
bond/react doc final touches
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@ -18,8 +18,8 @@ fix ID group-ID bond/react common_keyword values ...
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ID, group-ID are documented in "fix"_fix.html command. Group-ID is ignored. :ulb,l
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bond/react = style name of this fix command :l
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zero or more common keyword/value pairs may be appended directly after 'bond/react' :l
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these apply to all reaction specifications (below) :l
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the common keyword/values may be appended directly after 'bond/react' :l
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this applies to all reaction specifications (below) :l
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common_keyword = {stabilization} :l
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{stabilization} values = {no} or {yes} {group-ID} {xmax}
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{no} = no reaction site stabilization
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@ -309,26 +309,25 @@ can allow for the possibility of one or more reverse reactions.
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The optional keywords deal with the probability of a given reaction
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occurring as well as the stable equilibration of each reaction site as
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it occurs.
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it occurs:
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The {prob} keyword can affect whether an eligible reaction actually
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occurs. The fraction setting must be a value between 0.0 and 1.0. A
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uniform random number between 0.0 and 1.0 is generated and the
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The {prob} keyword can affect whether or not an eligible reaction
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actually occurs. The fraction setting must be a value between 0.0 and
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1.0. A uniform random number between 0.0 and 1.0 is generated and the
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eligible reaction only occurs if the random number is less than the
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fraction. Up to N reactions are permitted to occur, as optionally
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specified by the {max_rxn} keyword.
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The {stabilize_steps} keyword allows for the specification of how many
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timesteps a reaction site is stabilized before being returned to the
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overall system thermostat.
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In order to produce the most physical behavior, this 'reaction site
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equilibration time' should be tuned to be as small as possible while
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retaining stability for a given system or reaction step. After a
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limited number of case studies, this number has been set to a default
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of 60 timesteps. Ideally, it should be individually tuned for each fix
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reaction step. Note that in some situations, decreasing rather than
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increasing this parameter will result in an increase in stability.
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overall system thermostat. In order to produce the most physical
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behavior, this 'reaction site equilibration time' should be tuned to
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be as small as possible while retaining stability for a given system
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or reaction step. After a limited number of case studies, this number
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has been set to a default of 60 timesteps. Ideally, it should be
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individually tuned for each fix reaction step. Note that in some
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situations, decreasing rather than increasing this parameter will
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result in an increase in stability.
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The {update_edges} keyword can increase the number of atoms whose
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atomic charges are updated, when the pre-reaction template contains
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@ -336,11 +335,11 @@ edge atoms. When the value is set to 'charges,' all atoms' atomic
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charges are updated to those specified by the post-reaction template,
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including atoms near the edge of reaction templates. When the value is
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set to 'custom,' an additional section must be included in the map
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file that specifies whether to update charges, on a per-atom basis.
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The format of this section is detailed above. Listing a pre-reaction
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atom ID with a value of 'charges' will force the update of the atom's
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charge, even if it is near a template edge. Atoms not near a template
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edge are unaffected by this setting.
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file that specifies whether or not to update charges, on a per-atom
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basis. The format of this section is detailed above. Listing a
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pre-reaction atom ID with a value of 'charges' will force the update
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of the atom's charge, even if it is near a template edge. Atoms not
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near a template edge are unaffected by this setting.
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A few other considerations:
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