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首页> 外文期刊>The Astrophysical journal >CONSTRAINTS ON DARK ENERGY FROM SUPERNOVAE, GAMMA-RAY BURSTS, ACOUSTIC OSCILLATIONS, NUCLEOSYNTHESIS, LARGE-SCALE STRUCTURE, AND THE HUBBLE CONSTANT
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CONSTRAINTS ON DARK ENERGY FROM SUPERNOVAE, GAMMA-RAY BURSTS, ACOUSTIC OSCILLATIONS, NUCLEOSYNTHESIS, LARGE-SCALE STRUCTURE, AND THE HUBBLE CONSTANT

机译:超新能源,伽马射线爆发,声波振荡,核合成,大型结构和不稳定常数对暗能量的约束

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The luminosity distance versus redshift law is now measured using supernovae and γ-ray bursts, and the angular size distance is measured at the surface of last scattering by the CMB and at z = 0.35 by baryon acoustic oscillations. In this paper, this data is fit to models for the equation of state with w = — 1, w = constant, and w(z) = w_0 + w_a(1 — a). The last model is poorly constrained by the distance data, leading to unphysical solutions where the dark energy dominates at early times unless the large-scale structure and acoustic scale constraints are modified to allow for early-time dark energy effects. A flat ∧CDM model is consistent with all the data.
机译:现在使用超新星和γ射线爆发来测量光度距离与红移定律,并且角尺寸距离是通过CMB在最后一次散射的表面以及重子声振荡在z = 0.35处测量的。在本文中,该数据适合于状态方程的模型,其中w = -1,w =常数,w(z)= w_0 + w_a(1 a)。最后一个模型不受距离数据的约束,导致非物理解决方案,其中暗能量在早期占主导地位,除非对大型结构和声标度约束进行修改以允许早期的暗能量效应。平面∧CDM模型与所有数据一致。

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