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Perturbative triples correction for the
equation-of-motion coupled-cluster wave functions
with single and double substitutions for ionized states:
Theory, implementation, and examples
P.U. Manohar, J.F. Stanton, and A.I. Krylov J. Chem. Phys. 131, 114112
(2009)
A non-iterative N6 triples energy correction is presented for
the equation-of-motion coupled-cluster method with single and
double substitutions for ionized states (EOM-IP-CCSD).
The correction, which is size-intensive,
is derived using a second-order Rayleigh-Schrodinger
perturbative treatment and is similar to the approach
of Stanton and Gauss [Theor. Chim. Acta {\bf 93}, 303 (1996)].
In the present implementation, only the target EOM-IP states are corrected,
and the reference state is described by CCSD; the method is therefore more
useful for the study of the target states themselves than ionization
potentials. The performance of the correction, which demonstrates the caveat
above, is demonstrated by applications to
singlet methylene, BNB-,
nitrogen, carbon monoxide, acetylene, benzene, thymine
and adenine.
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