A variational approach is developed for bound state calculations in three-
and four-electron atomic systems. This approach can be applied to determine, in
principle, an arbitrary bound state in three- and four-electron ions and atoms.
Our variational wave functions are constructed from four- and five-body
gaussoids which depend upon the six (r12,r13,r14,r23,r24,r34) and ten (r12,r13,r14,r15,r23,r24,r25,r34,r35 and r45) relative coordinates, respectively. The approach
allows one to operate with the different number of electron spin functions. In
particular, the trial wave functions for the 1S-states in four-electron
atomic systems include the two independent spin functions χ1=αβαβ+βαβα−βααβ−αββα and χ2=2ααββ+2ββαα−βααβ−αββα−βαβα−αβαβ. We also discuss the
construction of variational wave functions for the excited 23S-states in
four-electron atomic systems.Comment: This paper was published in ZhETPh (JETP), v.137, 1 - 11 (2010). In
this version only a few corrections have been made in formula