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Constraining galaxy cluster velocity field with the thermal Sunyaev-Zel’dovich and kinematic Sunyaev-Zel’dovich cross-bispectrum

机译:用热的Sunyaev-Zel’dovich和运动学的Sunyaev-Zel’dovich交叉双谱约束星系团速度场

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The Sunyaev-Zel’dovich (SZ) effects are produced by the interaction of cosmic microwave background (CMB) photons with the ionized and diffuse gas of electrons inside galaxy clusters integrated along the line of sight. The two main effects are the thermal SZ (tSZ) produced by thermal pressure inside galaxy clusters and the kinematic SZ (kSZ) produced by peculiar motion of galaxy clusters compared to CMB rest-frame. The kSZ effect is particularly challenging to measure as it follows the same spectral behavior as the CMB, and consequently cannot be separated from the CMB using spectral considerations. In this paper, we explore the feasibility of detecting the kSZ through the computation of the tSZ-CMB-CMB cross-correlation bispectrum for current and future CMB experiments. We conclude that the next generation of CMB experiments will offer the possibility to detect the tSZ-kSZ-kSZ bispectrum at high signal-to-noise ration (S/N). This measurement will constraints the intra-cluster dynamics and the velocity field of galaxy cluster that is extremely sensitive to the growth rate of structures and thus to dark energy properties. Additionally, we also demonstrate that the tSZ-kSZ-kSZ bispectrum can be used to break the degeneracies between the mass-observable relation and the cosmological parameters to set tight constraints, up to 4%, on the Y ? M relation calibration.
机译:Sunyaev-Zel’dovich(SZ)效应是由宇宙微波背景(CMB)光子与沿视线积分的星系团内部电子的离子化和扩散气体的相互作用产生的。与CMB静止框架相比,两个主要影响是由星系团内部的热压力产生的热SZ(tSZ)和由星系团的特殊运动产生的运动学SZ(kSZ)。测量kSZ效果特别具有挑战性,因为它遵循与CMB相同的频谱行为,因此无法使用频谱考虑将其与CMB分开。在本文中,我们探讨了通过计算当前和未来CMB实验的tSZ-CMB-CMB互相关双谱来检测kSZ的可行性。我们得出结论,下一代CMB实验将提供在高信噪比(S / N)下检测tSZ-kSZ-kSZ双谱的可能性。这种测量将限制集群内部的动力学和星系团簇的速度场,这对结构的增长速度以及对暗能量的特性极为敏感。此外,我们还证明了tSZ-kSZ-kSZ双谱可以用于打破质量可观察​​关系和宇宙学参数之间的简并性,从而对Y设置严格的约束,最高可达4%。 M关系校准。

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