Correcting some aspects of the SPIN package documentation.
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@ -30,9 +30,11 @@ can be coupled to another Langevin thermostat applied to the atoms
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using :doc:`fix langevin <fix_langevin>` in order to simulate
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thermostatted spin-lattice systems.
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The magnetic Gilbert damping can also be applied using :doc:`fix langevin/spin <fix_langevin_spin>`. It allows to either dissipate
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the thermal energy of the Langevin thermostat, or to perform a
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relaxation of the magnetic configuration toward an equilibrium state.
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The magnetic damping can also be applied
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using :doc:`fix langevin/spin <fix_langevin_spin>`.
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It allows to either dissipate the thermal energy of the Langevin
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thermostat, or to perform a relaxation of the magnetic configuration
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toward an equilibrium state.
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The command :doc:`fix setforce/spin <fix_setforce>` allows to set the
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components of the magnetic precession vectors (while erasing and
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@ -52,9 +54,11 @@ All the computed magnetic properties can be output by two main
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commands. The first one is :doc:`compute spin <compute_spin>`, that
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enables to evaluate magnetic averaged quantities, such as the total
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magnetization of the system along x, y, or z, the spin temperature, or
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the magnetic energy. The second command is :doc:`compute property/atom <compute_property_atom>`. It enables to output all the
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per atom magnetic quantities. Typically, the orientation of a given
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magnetic spin, or the magnetic force acting on this spin.
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the magnetic energy. The second command
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is :doc:`compute property/atom <compute_property_atom>`.
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It enables to output all the per atom magnetic quantities. Typically,
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the orientation of a given magnetic spin, or the magnetic force
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acting on this spin.
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----------
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