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Boundary condition determined wave functions for the ground states of one- and two-electron homonuclear molecules

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Title Boundary condition determined wave functions for the ground states of one- and two-electron homonuclear molecules
 
Creator PATIL, SH
TANG, KT
TOENNIES, JP
 
Subject helium
 
Description Simple analytical wave functions satisfying appropriate boundary conditions are constructed for the ground states of one-and two-electron homonuclear molecules. Both the asymptotic condition when one electron is far away and the cusp condition when the electron coalesces with a nucleus are satisfied by the proposed wave function. For H-2(+), the resulting wave function is almost identical to the Guillemin-Zener wave function which is known to give very good energies. For the two electron systems H-2 and He-2(++), the additional electron-electron cusp condition is rigorously accounted for by a simple analytic correlation function which has the correct behavior not only for r(12)--> 0 and r(12)-->infinity but also for R --> 0 and R -->infinity, where r(12) is the interelectronic distance and R, the internuclear distance. Energies obtained from these simple wave functions agree within 2 x 10(-3) a.u. with the results of the most sophisticated variational calculations for all R and for all systems studied. This demonstrates that rather simple physical considerations can be used to derive very accurate wave functions for simple molecules thereby avoiding laborious numerical variational calculations. (C) 1999 [S0021-9606(99)30539-0].
 
Publisher AMER INST PHYSICS
 
Date 2011-07-15T13:21:43Z
2011-12-26T12:49:31Z
2011-12-27T05:34:23Z
2011-07-15T13:21:43Z
2011-12-26T12:49:31Z
2011-12-27T05:34:23Z
1999
 
Type Article
 
Identifier JOURNAL OF CHEMICAL PHYSICS, 111(16), 7278-7289
0021-9606
http://dx.doi.org/10.1063/1.480102
http://dspace.library.iitb.ac.in/xmlui/handle/10054/4288
http://hdl.handle.net/10054/4288
 
Language en