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NASA NTRS ยท 19760003871

Numerical techniques for the linear, nonadiabatic stellar pulsation problem

Abstract

The linear, nonadiabatic eigenvalue problem is formulated using Castor's method for calculating radial pulsations of stellar models. Both left and right eigenvectors are calculated. Initial eigenvalues for the linear, nonadiabatic solutions are obtained from the adiabatic eigenvalues and left and right eigenvectors. The orthogonality relation is obtained. Simple formulas for the Newton method are given. The iteration procedure is constrained to improve convergence. The Newton method is less satisfactory than the secant method for difficult cases. The linear, nonadiabatic solutions are shown to be sensitive to the number of zones with tau smaller than 2/3, and the value of (P/P sub r) surface or tau (surface). Optimum values can be determined for the number of zones and tau (surface). Application of the method to Population II Cepheids is briefly presented.

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BibTeXRIS

Bednarek, T. A.. 1975-01-01. Numerical techniques for the linear, nonadiabatic stellar pulsation problem. https://ntrs.nasa.gov/citations/19760003871

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