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首页> 外文期刊>The Astrophysical journal >NOISE IN STRONG LENSING COSMOGRAPHY
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NOISE IN STRONG LENSING COSMOGRAPHY

机译:强镜头摄影中的噪音

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摘要

Giant arcs in strong lensing galaxy clusters can provide a purely geometric determination of cosmological parameters, such as the dark energy density and equation of state. We investigate sources of noise in cosmography with giant arcs, focusing in particular on errors induced by density fluctuations along the line of sight and errors caused by modeling uncertainties. We estimate parameter errors in two independent ways, first by developing a Fisher matrix formalism for strong lensing parameters and next by directly ray-tracing through N-body simulations using a multiplane lensing code. We show that for reasonable power spectra, density fluctuations from large-scale structures produce > 100% errors in cosmological parameters derived from any single sight line, precluding the use of individual clusters or "golden lenses" to derive accurate cosmological constraints. Modeling uncertainties can similarly lead to large errors, and we show that the use of parameterized mass models in fitting strong lensing clusters can significantly bias the inferred cosmological parameters. We lastly speculate on the means by which these errors may be corrected.
机译:强透镜透镜星系团中的巨弧可以提供宇宙学参数的纯几何确定,例如暗能量密度和状态方程。我们研究具有巨大弧度的宇宙学中的噪声源,特别关注由沿视线的密度波动引起的误差和由建模不确定性引起的误差。我们以两种独立的方式估算参数误差,首先是通过开发用于强透镜参数的Fisher矩阵形式,然后通过使用多平面透镜代码通过N体仿真直接进行光线跟踪。我们表明,对于合理的功率谱,大型结构的密度波动会导致从任何单一视线得出的宇宙学参数中的误差> 100%,从而排除了使用单个星团或“金透镜”得出精确的宇宙学约束的可能性。建模不确定性可能同样会导致较大的误差,并且我们表明,在拟合强透镜组时使用参数化质量模型会显着偏离推断的宇宙学参数。我们最后推测了可以纠正这些错误的方法。

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