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首页> 外文期刊>The Astrophysical journal >THE THERMAL SUNYAEV-ZEL'DOVICH SIGNATURE OF BARYONS IN THE LOCAL UNIVERSE
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THE THERMAL SUNYAEV-ZEL'DOVICH SIGNATURE OF BARYONS IN THE LOCAL UNIVERSE

机译:本地大学巴里昂犬的热SUNYAEV-ZEL'DOVICH签名

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摘要

Using cosmological hydrodynamical simulations, we investigate the prospects of the thermal Sunyaev-Zel'dovich (tSZ) effect detecting the missing baryons in the local universe. We find that at least 80% of the tSZ luminosity is generated in collapsed structures and that ~70% of the remaining diffuse tSZ luminosity (i.e., ~15% of the total) comes from overdense regions with δ_(gas) > 10, such as filaments and superclusters. The gas present in regions with δ_(gas) < 10, despite making up 50% of the total baryon budget, leaves very little tSZ signature: it gives rise to only ~5% of the total tSZ luminosity. Thus, future cosmic microwave background (CMB) observations will be sensitive to, at best, 50% of the missing baryons, improving the current observational status but still leaving 50% unobserved. Since most of the tSZ effect is generated in halos, we find a tight correlation between gas pressure and galaxy number density. This allows us to predict the CMB Comptonization from existing galaxy surveys and to forecast the tSZ effect from the local structures probed by the Two Micron All Sky Survey (2MASS) galaxy catalog.
机译:使用宇宙流体动力学模拟,我们研究了热Sunyaev-Zel'dovich(tSZ)效应探测局部宇宙中缺失的重子的前景。我们发现,至少有80%的tSZ光度是在坍塌的结构中产生的,而约70%的剩余扩散tSZ光度(占总数的约15%)来自δ_(gas)> 10的过密区域。作为细丝和超级团簇。 δ_(gas)<10的区域中存在的气体,尽管构成了重子预算的50%,但留下的tSZ信号很少:它仅引起总tSZ光度的〜5%。因此,未来的宇宙微波本底(CMB)观测最多将对50%的缺失重子敏感,从而改善当前的观测状态,但仍然有50%未被观测。由于大多数tSZ效应是在光晕中产生的,因此我们发现气压与星系数密度之间存在紧密的相关性。这使我们能够从现有星系调查中预测CMB的质子化,并从“两微米全天候调查”(2MASS)星系目录所探测的本地结构中预测tSZ效应。

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