4.6 Article

Structure and thermochemistry of K2Rb, KRb2, and K2Rb2

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PHYSICAL REVIEW A
卷 82, 期 1, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.82.010502

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  1. US Department of Energy Office of Basic Energy Sciences
  2. Department of Defense Air Force Office of Scientific Research

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The formation and interaction of ultracold polar molecules is a topic of active research. Understanding possible reaction paths and molecular combinations requires accurate studies of the fragment and product energetics. We have calculated accurate gradient optimized ground-state structures and zero-point corrected atomization energies for the trimers and tetramers formed by the reaction of KRb with KRb and corresponding isolated atoms. The K2Rb and KRb2 trimers are found to have global minima at the C-2v configuration with atomization energies of 6065 and 5931 cm(-1) while the tetramer is found to have two stable planar structures, of D-2h and C-s symmetry, which have atomization energies of 11131 cm(-1) and 11133 cm(-1), respectively. We have calculated the minimum energy reaction path for the reaction KRb + KRb to K-2 + Rb-2 and found it to be barrierless.

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