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An effective algorithm for calculating the Chandrasekhar function

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Publication:483770
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DOI10.1016/j.cpc.2012.02.022zbMath1305.82007OpenAlexW2086656810MaRDI QIDQ483770

Yong-Cai Geng, Sumit K. Garg

Publication date: 17 December 2014

Published in: Computer Physics Communications (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1016/j.cpc.2012.02.022


zbMATH Keywords

isotropic scatteringAuger electronsChandrasekhar functionphotoelectrons


Mathematics Subject Classification ID

Numerical methods for integral equations (65R20) Statistical mechanics of solids (82D20) Transport processes in time-dependent statistical mechanics (82C70) Numerical integration (65D30) Software, source code, etc. for problems pertaining to statistical mechanics (82-04)


Related Items (3)

The Chandrasekhar function for modeling photoelectron transport in solids ⋮ Some comments on the evaluation of the Chandrasekhar \(H\) function ⋮ The Chandrasekhar function revisited



Cites Work

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  • Rational approximation formula for Chandrasekhar's \(H\)-function for isotropic scattering
  • Existence and Uniqueness Theorems for the Neutron Transport Equation
  • Formulae for Numerical Differentiation




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