We determine from first principles two sets of four-dimensional diabatic potential energy surfaces (PES's) for the interaction of NO(XΠ) with H, under the assumption of fixed NO and H bond distances. The first set of PES's was computed with the explicitly correlated multi-reference configuration interaction method [MRCISD-F12 + Q(Davidson)], and the second set with an explicitly correlated, coupled-cluster method [RCCSD(T)-F12a] with the geometry scan limited to geometries possessing a plane of symmetry. The calculated PES's are then fit to an analytical form suitable for bound state and scattering calculations. The RCCSD(T)-F12a dissociation energies (D) of the NO-para-H(ortho-D) and the NO-ortho-H(para-D) complexes are computed to be 22.7 (31.7) and 23.9 (29.2) cm, respectively. The values calculated with the MRCISD-F12 + Q PES's are 21.6 (31.1) and 23.3 (28.4) cm, respectively.
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http://dx.doi.org/10.1063/1.4977992 | DOI Listing |
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