Anisotropies in Luminosity Distance : Astrophysics and Relativity
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概要
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Anisotropies in the luminosity distance-redshift (d_L-z) relation caused by the large-scale structure (LSS) of the universe are studied. We solve the Raychaudhuri equation in Friedmann-Robertson-Walker models, taking account of the LSS by the linear perturbation method. Numerical calculations to evaluate the amplitude of the anisotropies are carried out in flat models with the cosmological constant and in open models, employing the cold dark matter model and the COBE-normalization for the power spectrum of the density perturbation. The implications of our calculations for observation are discussed. These anisotropies in d_L may cause uncertainties in determining cosmological parameters, e.g., the deceleration parameter q_0, via the magnitude-redshift relation. We found that the effects on the d_L-z relation of the LSS are divided into three types: the peculiar velocity effect, gravitational lensing and the Sachs-Wolfe effect. We show that, for lower redshifts, the peculiar velocity effect is dominant, while around z ≳ 0.5, the gravitational lensing is dominant, though the amplitude is rather small, affecting the estimate of q_0 by at most about 5%.
- 理論物理学刊行会の論文
- 1999-04-25
著者
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SASAKI Misao
Yukawa Institute for Theoretical Physics, Kyoto University
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Sasaki Misao
Department Of Earth And Space Science Graduate School Of Science Osaka University
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SUGIYAMA Naoshi
Department of Physics and Astrophysics, Nagoya University
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Sugiura Norimasa
Department Of Physics Kyoto University
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Sugiyama N
Kyoto Univ. Kyoto Jpn
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Sugiyama Naoshi
Department Of Physics And Astrophysics Nagoya University
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SASAKI Misao
Department of Earth and Space Science, Osaka University
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SASAKI Misao
Department of Earth and Space Science, Graduate School of Science Osaka University
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SASAKI Misao
Research Institute for Fundamental Physics, Kyoto University
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SASAKI Misao
Department of Earth aud Space Science, Oasaka University
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SASAKI Misao
Research Institute for Theoretical Physics, Hiroshima University
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SASAKI Misao
Department of Physics, School of Science, University of Tokyo
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SUGIYAMA Naoshi
Department of Physics, Kyoto University
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