ON HOUSTON'S METHOD OF EVALUATING INTEGRALS OVER THE BRILLOUIN ZONE: NORMALIZATION FACTOR IN A SIMPLE CUBIC LATTICE

Author:

Ganesan S.,Srinivasan R.

Abstract

In evaluating integrals over the Brillouin zone by Houston's method, a normalization factor has to be used. A wave-vector-dependent normalization factor nj(q + Δq/2) is calculated by equating the volume common to a spherical shell of radius q and thickness Δq and the simple cubic Brillouin zone to the expression given by a j-direction Houston method. Some sample integrals are evaluated using this (GS) normalization procedure and Horton and Schiff's (HS) normalization procedure, originally developed for face-centered cubic lattices. The superiority of the GS method, especially with highly anisotropic functions, is demonstrated. From an evaluation of the moments of the frequency distribution function in a simple cubic lattice for various values of the anisotropy parameter, it is concluded that, when high accuracy is desired, the GS procedure is applicable over a wider range of anisotropy parameter than the HS procedure. The θ–T curve calculated by using the correct normalization procedure in a simple cubic lattice is in good agreement with that calculated by Blackman's method.

Publisher

Canadian Science Publishing

Subject

General Physics and Astronomy

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Temperature Dependence of the Thermal Resistivity of Noble Metals;Zeitschrift für Naturforschung A;1977-06-01

2. Ideal Thermal Resistivity of Lithium, Potassium, and Rubidium;Physica Status Solidi (b);1977-05-01

3. Evaluation of integrals over the Brillouin zone by Houston's method;Journal of Computational Physics;1972-10

4. Isolated Interstitials in Silicon;Physical Review B;1971-10-15

5. Electrical Resistivity of Noble Metals by Krebs's Method;physica status solidi (b);1969

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