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A smooth particle mesh Ewald method

Ulrich Essmann; L. Perera; Max L. Berkowitz; Tom Darden; Hsing Lee; Lee G. Pedersen · The Journal of Chemical Physics · 1995

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The previously developed particle mesh Ewald method is reformulated in terms of efficient B-spline interpolation of the structure factors. This reformulation allows a natural extension of the method to potentials of the form 1/rp with p≥1. Furthermore, efficient calculation of the virial tensor follows. Use of B-splines in place of Lagrange interpolation leads to analytic gradients as well as a significant improvement in the accuracy. We demonstrate that arbitrary accuracy can be achieved, independent of system size N, at a cost that scales as N log(N). For biomolecular systems with many thousands of atoms this method permits the use of Ewald summation at a computational cost comparable to that of a simple truncation method of 10 Å or less.

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APA 7

Essmann, U, Perera, L, Berkowitz, M. L, Darden, T, Lee, H, & Pedersen, L. G. (1995). A smooth particle mesh Ewald method. https://doi.org/10.1063/1.470117

MLA

Essmann, Ulrich, et al. "A smooth particle mesh Ewald method." 1995. https://doi.org/10.1063/1.470117.

Chicago

Essmann, Ulrich, L. Perera, Max L. Berkowitz, Tom Darden, Hsing Lee, and Lee G. Pedersen. 1995. "A smooth particle mesh Ewald method.". https://doi.org/10.1063/1.470117.

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Essmann, U. et al. 1995, A smooth particle mesh Ewald method, The Journal of Chemical Physics, available at: https://doi.org/10.1063/1.470117 [Accessed 7 Aug. 2026].

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Title
A smooth particle mesh Ewald method
Author / contributors
Ulrich Essmann; L. Perera; Max L. Berkowitz; Tom Darden; Hsing Lee; Lee G. Pedersen
Publisher
The Journal of Chemical Physics
Publication year
1995
Language
English

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