Published September 18, 2003 | Version public
Journal Article

Hyperspherical Harmonics for Triatomic Systems

  • 1. ROR icon California Institute of Technology

Abstract

A recursion procedure for the analytical generation of hyperspherical harmonics for triatomic systems, in terms of row-orthonormal hyperspherical coordinates, is presented. Using this approach and an algebraic Mathematica program, these harmonics were obtained for all values of the hyperangular momentum quantum number up to 40 (about 2.3 million of them). Their properties are presented and discussed. Since they are regular at the poles of the triatomic kinetic energy operator, are complete, and are not highly oscillatory, they constitute an excellent basis set for calculating the local hyperspherical surface functions in the strong interaction region of nuclear configuration space. This basis set is, in addition, numerically very efficient and should permit benchmark-quality calculations of state-to-state differential and integral cross sections for those systems.

Additional Information

© 2003 American Chemical Society. Received 11 April 2003. Published online 22 August 2003. Published in print 1 September 2003. This work has been supported in part by NSF Grant No. CHE-138091.

Additional details

Identifiers

Eprint ID
77667
DOI
10.1021/jp030435j
Resolver ID
CaltechAUTHORS:20170523-145321214

Funding

NSF
CHE-138091

Dates

Created
2017-05-24
Created from EPrint's datestamp field
Updated
2021-11-15
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