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首页> 外文期刊>The Astrophysical journal >CONSTRAINTS ON THE ENERGY CONTENT OF THE UNIVERSE FROM A COMBINATION OF GALAXY CLUSTER OBSERVABLES
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CONSTRAINTS ON THE ENERGY CONTENT OF THE UNIVERSE FROM A COMBINATION OF GALAXY CLUSTER OBSERVABLES

机译:结合银河星团可观察物约束宇宙的能量含量

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We demonstrate that constraints on cosmological parameters from the distribution of clusters as a function of redshift (dN/dz) are complementary to accurate angular diameter distance (D_A) measurements to clusters, and their combination significantly tightens constraints on the energy density content of the universe. The number counts can be obtained from X-ray and/or Sunyaev-Zel'dovich (SZ) effect surveys, and the angular diameter distances can be determined from deep observations of the intracluster gas using its thermal bremsstrahlung X-ray emission and the SZ effect. We combine constraints from simulated cluster number counts expected from a 12 deg~2 SZ cluster survey and constraints from simulated angular diameter distance measurements based on the X-ray/SZ method, assuming a statistical accuracy of 10% in the angular diameter distance determination of 100 clusters with redshifts less than 1.5. We find that Ω_m can be determined within about 25%, Ω_Λ within 20%, and w within 16%. We show that combined dN/dz + D_A constraints can be used to constrain the different energy densities in the universe even in the presence of a few percent redshift dependent systematic error in D_A. We also address the question of how best to select clusters of galaxies for accurate diameter distance determinations. We show that the joint dN/dz + D_A constraints on cosmological parameters for a fixed target accuracy in the energy density parameters are optimized by selecting clusters with redshift upper cutoffs in the range 0.5approx
机译:我们证明,作为红移(dN / dz)的函数,来自星团分布的宇宙学参数约束是对星团的精确角直径距离(D_A)测量的补充,并且它们的组合显着收紧了对宇宙能量密度含量的约束。数量计数可从X射线和/或Sunyaev-Zel'dovich(SZ)效应调查获得,角直径距离可通过使用热致辐射X射线发射和SZ对团簇内气体进行深入观察来确定影响。我们将12 deg〜2 SZ群集调查中预期的模拟簇数计数的约束与基于X射线/ SZ方法的模拟角直径距离测量的约束相结合,假设确定的角直径距离的统计精度为10% 100个集群的红移小于1.5。我们发现可以确定Ω_m在大约25%之内,Ω_Λ在20%之内,w在16%之内。我们表明,即使在D_A中存在与红移有关的几个系统误差的情况下,组合的dN / dz + D_A约束也可用于约束宇宙中不同的能量密度。我们还解决了如何最好地选择星系团以进行精确的直径距离确定的问题。我们表明,对于能量参数中固定目标精度的宇宙学参数,联合dN / dz + D_A约束是通过选择红移上限为0.5approx

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