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OLD GALAXIES AT HIGH REDSHIFT AND THE COSMOLOGICAL CONSTANT

机译:高度漂移和宇宙常数的旧星系

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In a recent striking discovery, Dunlop et al. (1996) observed a galaxy at redshift z = 1.55 with an estimated age of 3.5 Gyr. This is incompatible with age estimates for a flat matter-dominated universe unless the Hubble constant is less than 45 km s~(-1) Mpc~(-1). While both an open universe and a universe with a cosmological constant alleviate this problem, I argue here that this result favors a nonzero cosmological constant, especially when it is considered in light of other cosmological constraints: (1) for the favored range of matter densities, the constraint is more stringent than the globular cluster age constraint, which already favors a nonzero cosmological constant; (2) the age-redshift relation for redshifts of order unity implies that the ratio between the age associated with redshift 1.55 and the present age is also generally larger for a cosmological constant-dominated universe than for an open universe; (3) structure formation is generally suppressed in low-density cosmologies, arguing against early galaxy formation. The additional constraints imposed by the new observation on the parameter space of h versus Ω_(matter) (where H = 100 h km s~(-1) Mpc~(-1)) are derived for both cosmologies.
机译:在最近的惊人发现中,邓洛普(Dunlop)等人。 (1996年)观察到一个红移z = 1.55的星系,估计年龄为3.5 Gyr。除非哈勃常数小于45 km s〜(-1)Mpc〜(-1),否则这与以平面物质为主的宇宙的年龄估计是不相容的。虽然开放宇宙和具有宇宙常数的宇宙都可以缓解此问题,但我在此认为,该结果倾向于非零宇宙常数,尤其是在考虑到其他宇宙学约束条件下:(1)对于物质密度的优选范围,该约束比球状星团年龄约束更为严格,后者已经倾向于使用非零的宇宙常数; (2)阶数为1的红移的年龄-红移关系意味着,与红移相关的年龄1.55与现今年龄之间的比率,对于宇宙学常数为主的宇宙,通常比开放宇宙大。 (3)在早期的低密度宇宙学中,结构形成通常被抑制,这与早期星系的形成有关。对于这两种宇宙学,都得出了新观测值对h与Ω_(matter)(其中H = 100 h km s〜(-1)Mpc〜(-1))的参数空间施加的附加约束。

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