Changes of equilib cell dims for fixed atom positions
Posted: Sat Feb 02, 2013 10:13 pm
Hello all!
I am examining the variation of the ground state energy as I scan the location of a single atom in the primitive cell of a multi-atom hexagonal structure. This is readily done if optcell = 0, but I'd like to check whether the changes of the atom's position causes (slight) changes in the primitive cell *dimensions* (or even just the equilibrium volume). I envision that the atoms move along--in reduced coordinates--with the rprim.
Alas optcell = 2 with ionmov = 0 fails:
The value of the input variable ionmov is 0, while it must be
equal to one of the following: 2 3 13
Action : you should change the input variables ionmov or optcell.
While this is entirely consistent with the documentation, I have not been able to identify a pair of values for ionmov and optcell which permit me to do what I want (i.e.,see if changes in one atom's position cause changes to the primitive cell dimensions.) Perhaps I do not understood whether forces on atoms are independent of stresses on primitive cells, and that the reason I can't do this is because there can be no such coupling.
If not, can anyone tell me what I've overlooked?
Many thanks!
DMW
I am examining the variation of the ground state energy as I scan the location of a single atom in the primitive cell of a multi-atom hexagonal structure. This is readily done if optcell = 0, but I'd like to check whether the changes of the atom's position causes (slight) changes in the primitive cell *dimensions* (or even just the equilibrium volume). I envision that the atoms move along--in reduced coordinates--with the rprim.
Alas optcell = 2 with ionmov = 0 fails:
The value of the input variable ionmov is 0, while it must be
equal to one of the following: 2 3 13
Action : you should change the input variables ionmov or optcell.
While this is entirely consistent with the documentation, I have not been able to identify a pair of values for ionmov and optcell which permit me to do what I want (i.e.,see if changes in one atom's position cause changes to the primitive cell dimensions.) Perhaps I do not understood whether forces on atoms are independent of stresses on primitive cells, and that the reason I can't do this is because there can be no such coupling.
If not, can anyone tell me what I've overlooked?
Many thanks!
DMW