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首页> 外文期刊>The Astrophysical journal >THEORETICAL ESTIMATES OF TWO-POINT SHEAR CORRELATION FUNCTIONS USING TANGLED MAGNETIC FIELDS
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THEORETICAL ESTIMATES OF TWO-POINT SHEAR CORRELATION FUNCTIONS USING TANGLED MAGNETIC FIELDS

机译:纠缠磁场对两点剪切相关函数的理论估计

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The existence of primordial magnetic fields can induce matter perturbations with additional power at small scales as compared to the usual ΛCDM model. We study its implication within the context of a two-point shear correlation function from gravitational lensing. We show that a primordial magnetic field can leave its imprints on the shear correlation function at angular scales a few arcminutes. The results are compared with CFHTLS data, which yield some of the strongest known constraints on the parameters (strength and spectral index) of the primordial magnetic field. We also discuss the possibility of detecting sub-nano Gauss fields using future missions such as SNAP.
机译:与通常的ΛCDM模型相比,原始磁场的存在可以在较小的范围内以附加的功率诱发物质扰动。我们在重力透镜的两点剪切相关函数的上下文中研究了它的含义。我们表明,原始磁场可以在弧度几分钟的弧度下将其烙印留在剪切相关函数上。将结果与CFHTLS数据进行比较,CFHTLS数据对原始磁场的参数(强度和光谱指数)产生一些最强的已知约束。我们还将讨论使用诸如SNAP之类的未来任务探测亚纳米高斯场的可能性。

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