English

Real-space grid representation of momentum and kinetic energy operators for electronic structure calculations

Quantum Physics 2017-11-21 v2 Materials Science

Abstract

We show that the central finite difference formula for the first and the second derivative of a function can be derived, in the context of quantum mechanics, as matrix elements of the momentum and kinetic energy operators using, as a basis set, the discrete coordinate eigenkets xn\vert x_n\rangle defined on the uniform grid xn=nax_n=na. Simple closed form expressions of the matrix elements are obtained starting from integrals involving the canonical commutation rule. A detailed analysis of the convergence toward the continuum limit with respect to both the grid spacing and the approximation order is presented. It is shown that the convergence from below of the eigenvalues in electronic structure calculations is an intrinsic feature of the finite difference method.

Keywords

Cite

@article{arxiv.1711.05612,
  title  = {Real-space grid representation of momentum and kinetic energy operators for electronic structure calculations},
  author = {Domenico Ninno and Giovanni Cantele and Fabio Trani},
  journal= {arXiv preprint arXiv:1711.05612},
  year   = {2017}
}