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Supernova Ia Constraints on a Time-variable Cosmological “Constant”

机译:超新星Ia对时变宇宙学“常数”的约束

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The energy density of a scalar field with potential V() ∝ -α, α 0, behaves like a time-variable cosmological constant that could contribute significantly to the present energy density. Predictions of this spatially flat model are compared to recent Type Ia supernova apparent magnitude versus redshift data. A large region of model parameter space is consistent with current observations. (These constraints are based on the exact scalar field model equations of motion, not on the widely used time-independent equation of state fluid approximation equations of motion.) We examine the consequences of also incorporating constraints from recent measurements of the Hubble parameter and the age of the universe in the constant and time-variable cosmological constant models. We also study the effect of using a noninformative prior for the density parameter.
机译:势为V()∝-α,α> 0的标量场的能量密度表现得像随时间变化的宇宙常数,可以极大地影响当前的能量密度。将此空间平坦模型的预测与最新的Ia型超新星视在大小与红移数据进行比较。模型参数空间的较大区域与当前的观察结果一致。 (这些约束是基于精确的标量场模型运动方程,而不是基于广泛使用的与时间无关的状态流体近似运动方程。)我们研究了将最近的哈勃参数测量值和常数和随时间变化的宇宙学常数模型中的宇宙年龄。我们还研究了对密度参数使用非信息先验的效果。

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