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Measuring the Hubble function with standard candle clustering

机译:用标准蜡烛聚类测量哈勃函数

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Supernova Ia magnitude surveys measure the dimensionless luminosity distance H0DL. However, from the distances alone one cannot obtain quantities like H(z) or the dark energy equation of state, unless further cosmological assumptions are imposed. Here we show that by measuring the power spectrum of density contrast and of peculiar velocities of supernovae one can estimate also H(z)/H-0 regardless of background or linearly perturbed cosmology and of galaxy-matter bias. This method, dubbed Clustering of Standard Candles (CSC) also yields the redshift distortion parameter beta(k, z) and the biased matter power spectrum in a model-independent way. We forecast that an optimistic (pessimistic) LSST may be able to constrain H(z)/H-0 to 5-13 per cent (9-40 per cent) in redshift bins of Delta z = 0.1 up to at least z = 0.6.
机译:Supernova IA幅度调查测量无量纲亮度距离H0DL。 然而,除非施加进一步的宇宙学假设,否则从单独的距离中不能获得像h(z)或暗能量方程等数量。 在这里,我们表明,通过测量密度对比度的功率谱和超胃部的特殊速度,无论背景或线性扰动宇宙和星系 - 物质偏置如何,也可以估计h(z)/ h-0。 这种方法称为标准蜡烛的聚类(CSC)也以独立于模型的方式产生红移失真参数β(K,Z)和偏置物品功率谱。 我们预测,乐观(悲观)LSST可能能够在Delta Z = 0.1的红移箱中限制H(Z)/ H-0至5-13%(9-40%),最高Z = 0.6 。

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