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1.
We consider spatially homogeneous and anisotropic Bianchi type V space- time with a bulk viscous fluid source, and time varying gravitational constant G and cosmological term Λ. The coefficient of bulk viscosity ζ is assumed to be a simple linear function of the Hubble parameter H (i.e. ζ = ζ 0 + ζ 1 H , where ζ 0 and ζ 1 are constants). The Einstein field equations are solved explicitly by using a law of variation for the Hubble parameter, which yields a constant value of the deceleration parameter. Physical and kinematical parameters of the models are discussed. The models are found to be compatible with the results of astronomical observations. 相似文献
2.
Stochastic data in astronomy. II. Search for harmonic components of time series with very large gaps
This is an analysis of certain aspects of using the CLEAN algorithm for Fourier analysis of short segments of time series
and of time series consisting of short segments of length ΔT separated by very long irregular gaps. It is assumed that the
time series contain a harmonic component of amplitude A with a period longer than the length of the longest of the segments
of the time series plus white noise with dispersion N2. Reliability plots are constructed for determining the ranges of the parameters (ν, ϕ) for which the CLEAN procedure can be used to determine the values of ν, the frequency, and ϕ, the phase of the harmonic
component, with a given accuracy. The results of this analysis are used to search for harmonic components in the variation
of the Hβ line profile in spectra of the triple star δ Ori A obtained in 2004 with the BTA telescope at the Special Astrophysical
Observatory of the Russian Academy of Sciences.
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Translated from Astrofizika, Vol. 50, No. 2, pp. 281–297 (May 2007). 相似文献