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首页> 外文期刊>The Astrophysical journal >IMPROVED FORECASTS FOR THE BARYON ACOUSTIC OSCILLATIONS AND COSMOLOGICAL DISTANCE SCALE
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IMPROVED FORECASTS FOR THE BARYON ACOUSTIC OSCILLATIONS AND COSMOLOGICAL DISTANCE SCALE

机译:巴里翁声振荡和宇宙学距离尺度的改进预测

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We present the cosmological distance errors achievable using the baryonic acoustic oscillations as a standard ruler. We begin from a Fisher matrix formalism that is upgraded from earlier Seo and Eisenstein work. We isolate the information from the baryonic peaks by excluding distance information from other less robust sources. Meanwhile, we accommodate the Lagrangian displacement distribution into the Fisher matrix calculation to reflect the gradual loss of information in scaleiand in time due to nonlinear growth, nonlinear bias, and nonlinear redshift distortions. We then show that we can contract the multidimensional Fisher matrix calculations into a two-dimensional or even one-dimensional formalism with physically motivated approximations. We present the resulting fitting formula for the cosmological distance errors from galaxy redshift surveys as a function of survey parameters and nonlinearity, which saves us going through the 12 dimensional Fisher matrix calculations. Finally, we show excellent agreement between the distance error estimates from the revised Fisher matrix and the precision on the distance scale recovered from N-body simulations.
机译:我们提出了使用重音声振荡作为标准尺可以实现的宇宙学距离误差。我们从费雪矩阵形式主义开始,该形式主义是从Seo和Eisenstein早期的工作中升级而来。通过从其他不太可靠的来源中排除距离信息,我们将信息与重子峰分开。同时,我们将拉格朗日位移分布纳入Fisher矩阵计算中,以反映由于非线性增长,非线性偏差和非线性红移失真而导致的信息按时间比例逐渐丢失的情况。然后,我们表明可以将多维费舍尔矩阵计算压缩为具有物理逼近的二维甚至一维形式主义。我们提出了由银河红移测量得出的宇宙距离误差的拟合公式,作为测量参数和非线性的函数,这使我们免去了12维Fisher矩阵计算的麻烦。最后,我们显示出修正后的Fisher矩阵的距离误差估计值与N体模拟所恢复的距离尺度精度之间的极佳一致性。

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