Literature DB >> 17902899

Pair potential for helium from symmetry-adapted perturbation theory calculations and from supermolecular data.

Małgorzata Jeziorska1, Wojciech Cencek, Konrad Patkowski, Bogumił Jeziorski, Krzysztof Szalewicz.   

Abstract

Symmetry-adapted perturbation theory (SAPT) was applied to the helium dimer for interatomic separations R from 3 to 12 bohrs. The first-order interaction energy and the bulk of the second-order contribution were obtained using Gaussian geminal basis sets and are converged to about 0.1 mK near the minimum and for larger R. The remaining second-order contributions available in the SAPT suite of codes were computed using very large orbital basis sets, up to septuple-zeta quality, augmented by diffuse and midbond functions. The accuracy reached at this level was better than 1 mK in the same region. All the remaining components of the interaction energy were computed using the full configuration interaction method in bases up to sextuple-zeta quality. The latter components, although contributing only 1% near the minimum, have the largest uncertainty of about 10 mK in this region. The total interaction energy at R=5.6 bohrs is -11.000+/-0.011 K. For R< or =6.5 bohrs, the supermolecular (SM) interaction energies computed by us recently turned out to be slightly more accurate. Therefore, we have combined the SM results for R< or =6.5 bohrs with the SAPT results from 7.0 to 12 bohrs to fit analytic functions for the potential and for its error bars. The potential fit uses the best available van der Waals constants C(6) through C(16), including C(11), C(13), and C(15), and is believed to be the best current representation of the Born-Oppenheimer (BO) potential for helium. Using these fits, we found that the BO potential for the helium dimer exhibits the well depth D(e)=11.006+/-0.004 K, the equilibrium distance R(e)=5.608+/-0.012 bohrs, and supports one bound state for (4)He(2) with the dissociation energy D(0)=1.73+/-0.04 mK, and the average interatomic separation R=45.6+/-0.5 A.

Entities:  

Year:  2007        PMID: 17902899     DOI: 10.1063/1.2770721

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  5 in total

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Authors:  Xia Wu; Yan Sun; Yin-Chun Gao; Gen-Hua Wu
Journal:  J Mol Model       Date:  2013-04-23       Impact factor: 1.810

2.  Imaging the He2 quantum halo state using a free electron laser.

Authors:  Stefan Zeller; Maksim Kunitski; Jörg Voigtsberger; Anton Kalinin; Alexander Schottelius; Carl Schober; Markus Waitz; Hendrik Sann; Alexander Hartung; Tobias Bauer; Martin Pitzer; Florian Trinter; Christoph Goihl; Christian Janke; Martin Richter; Gregor Kastirke; Miriam Weller; Achim Czasch; Markus Kitzler; Markus Braune; Robert E Grisenti; Wieland Schöllkopf; Lothar Ph H Schmidt; Markus S Schöffler; Joshua B Williams; Till Jahnke; Reinhard Dörner
Journal:  Proc Natl Acad Sci U S A       Date:  2016-12-06       Impact factor: 11.205

3.  Scalable improvement of SPME multipolar electrostatics in anisotropic polarizable molecular mechanics using a general short-range penetration correction up to quadrupoles.

Authors:  Christophe Narth; Louis Lagardère; Étienne Polack; Nohad Gresh; Qiantao Wang; David R Bell; Joshua A Rackers; Jay W Ponder; Pengyu Y Ren; Jean-Philip Piquemal
Journal:  J Comput Chem       Date:  2016-02-15       Impact factor: 3.376

4.  Improved First-Principles Calculation of the Third Virial Coefficient of Helium.

Authors:  Giovanni Garberoglio; Michael R Moldover; Allan H Harvey
Journal:  J Res Natl Inst Stand Technol       Date:  2011-08-01

5.  First-Principles Calculation of the Third Virial Coefficient of Helium.

Authors:  Giovanni Garberoglio; Allan H Harvey
Journal:  J Res Natl Inst Stand Technol       Date:  2009-10-01
  5 in total

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