Symbolic-numerical algorithms to solve the quantum tunneling problem for a coupled pair of ions

  • Authors:
  • A. A. Gusev;S. I. Vinitsky;O. Chuluunbaatar;V. P. Gerdt;V. A. Rostovtsev

  • Affiliations:
  • Institute for Nuclear Research, Dubna, Russia;Institute for Nuclear Research, Dubna, Russia;Institute for Nuclear Research, Dubna, Russia;Institute for Nuclear Research, Dubna, Russia;Institute for Nuclear Research, Dubna, Russia

  • Venue:
  • CASC'11 Proceedings of the 13th international conference on Computer algebra in scientific computing
  • Year:
  • 2011

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Abstract

Symbolic-numerical algorithms for solving a boundary value problem (BVP) for the 2D Schrödinger equation with homogeneous third type boundary conditions to study the quantum tunneling model of a coupled pair of nonidentical ions are described. The Kantorovich reduction of the above problem with non-symmetric long-range potentials to the BVPs for sets of the second order ordinary differential equations (ODEs) is given by expanding solution over the one-parametric set of basis functions. Symbolic algorithms for evaluation of asymptotics of the basis functions, effective potentials, and linear independent solutions of the ODEs in the form of inverse power series of independent variable at large values are given by using appropriate etalon equations. Benchmark calculation of quantum tunneling problem of coupled pair of identical ions through Coulomb-like barrier is presented.