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利用引力透镜检验宇宙起源模型。

Testing cosmogonic models with gravitational lensing.

出版信息

Science. 1995 Apr 14;268(5208):274-6. doi: 10.1126/science.268.5208.274.

Abstract

Gravitational lensing provides a strict test of cosmogonic models because it is directly sensitive to mass inhomogeneities. Detailed numerical propagation of light rays through a universe that has a distribution of inhomogeneities derived from the standard CDM (cold dark matter) scenario, with the aid of massive, fully nonlinear computer simulations, was used to test the model. It predicts that more widely split quasar images should have been seen than were actually found. These and other inconsistencies rule out the Cosmic Background Explorer (COBE)-normalized CDM model with density parameter Omega = 1 and the Hubble constant (H(o)) = 50 kilometers second(-1) megaparsec(-1); but variants of this model might be constructed, which could pass the stringent tests provided by strong gravitational lensing.

摘要

引力透镜为宇宙起源模型提供了严格的检验,因为它直接对物质非均匀性敏感。借助大规模的、完全非线性的计算机模拟,详细地传播光线穿过一个具有从标准冷暗物质(CDM)场景得出的物质非均匀分布的宇宙,以测试该模型。它预测,应该看到比实际发现的更为广泛分裂的类星体图像。这些以及其他不一致性排除了宇宙背景探测者(COBE)归一化的 CDM 模型,该模型的密度参数Ω=1 和哈勃常数(H(o))=50 千米/秒/兆秒差距;但是,可能构建出该模型的变体,这些变体可能通过强引力透镜提供的严格测试。

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