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Ground eigenvalue and eigenfunction of a spin-weighted spheroidal wave equation in low frequencies

Ground eigenvalue and eigenfunction of a spin-weighted spheroidal wave equation in low frequencies
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摘要 Spin-weighted spheroidal wave functions play an important role in the study of the linear stability of rotating Kerr black holes and are studied by the perturbation method in supersymmetric quantum mechanics. Their analytic ground eigenvalues and eigenfunctions are obtained by means of a series in low frequency. The ground eigenvalue and eigenfunction for small complex frequencies are numerically determined. Spin-weighted spheroidal wave functions play an important role in the study of the linear stability of rotating Kerr black holes and are studied by the perturbation method in supersymmetric quantum mechanics. Their analytic ground eigenvalues and eigenfunctions are obtained by means of a series in low frequency. The ground eigenvalue and eigenfunction for small complex frequencies are numerically determined.
机构地区 School of Science
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第5期33-43,共11页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant Nos. 10875018 and 10773002)
关键词 spin-weighted spheroidal wave equation perturbation method in supersymmetric quantum mechanics super-potential eigenvalue and eigenfunction spin-weighted spheroidal wave equation, perturbation method in supersymmetric quantum mechanics, super-potential, eigenvalue and eigenfunction
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