Download citation
Download citation
link to html
Modern methods of quantum crystallography are techniques firmly rooted in quantum chemistry and, as in many quantum chemical strategies, electron densities are expressed as two-centre expansions that involve basis functions centred on atomic nuclei. Therefore, the computation of the necessary structure factors requires the evaluation of Fourier transform integrals of basis function products. Since these functions are usually Cartesian Gaussians, in this communication it is shown that the Fourier integrals can be efficiently calculated by exploiting an extension of the Obara–Saika recurrence formulas, which are successfully used by quantum chemists in the computation of molecular integrals. Implementation and future perspectives of the technique are also discussed.

Supporting information

pdf

Portable Document Format (PDF) file https://doi.org/10.1107/S205327332000042X/pl5002sup1.pdf
Further theoretical details

zip

Zip compressed file https://doi.org/10.1107/S205327332000042X/pl5002sup2.zip
Structure factors computed using the Obara-Saika and McMurchie-Davidson techniques, for alpha-glycine, L-alanine and salicylic acid


Follow Acta Cryst. A
Sign up for e-alerts
Follow Acta Cryst. on Twitter
Follow us on facebook
Sign up for RSS feeds