R. Orlando et al., A SUPER-CELL APPROACH FOR THE STUDY OF LOCALIZED DEFECTS IN SOLIDS - CARBON SUBSTITUTION IN BULK SILICON, Journal of physics. Condensed matter, 6(41), 1994, pp. 8573-8583
Carbon substitution in bulk silicon has been investigated using the su
per-cell approach, in conjunction with the periodic ab initio Hartree-
Fock method. The convergence of the defect formation energy and of the
relaxed defect geometry as a function of the super-cell size is discu
ssed with reference to super-cells containing 8, 16, 32 and 64 atoms.
It turns out that the convergence of the unrelaxed defect formation en
ergy is rapid, in spite of the large local charge redistribution aroun
d the defect (the net charge on carbon is 1.2\e\); the relaxation effe
cts are very large (about 2.0 eV) and involve mainly the first and sec
ond neighbours; however, the relaxation of the fifth neighbours of the
defect (which is possible only with the biggest super-cell considered
) lowers the energy by a further 0.06 eV. The defect formation energy
and the atomic displacements obtained with the 32 and 64 atoms super-c
ells are similar, whereas the energy difference between the 16 and 32
atoms cells is as large as 0.4 eV.