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Finding the missing baryons with fast radio bursts and Sunyaev-Zeldovich maps

机译:找到带有快速无线电突发和Sunyaev-Zeldovich地图的失踪的Baryons

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摘要

Almost a third of the cosmic baryons are “missing” at low redshifts, as they reside in the invisible warmhot intergalactic medium (WHIM). The thermal Sunyaev-Zeldovich (tSZ) effect, which measures the lineof- sight integral of the plasma pressure, can potentially detect this WHIM, although its expected signal is hidden below the noise. Extragalactic dispersion measures (DMs)-obtained through observations of fast radio bursts (FRBs)-are excellent tracers of the WHIM, as they measure the column density of plasma, regardless of its temperature. Here we propose cross correlating DMs and tSZ maps as a new way to find and characterize the missing baryons in the WHIM. Our method relies on the precise (~ arcminute) angular localization of FRBs to assign each burst a DM and a y parameter. We forecast that the signal from the WHIM should be confidently detected in a cross-correlation analysis of ~10~4 FRBs, expected to be gathered in a year of operation of the upcoming CHIME and HIRAX radio arrays, confirming the recent tentative detections of filamentary WHIM. Using this technique, future CMB probes (which might lower the tSZ noise) could determine both the temperature of the WHIM and its evolution to within tens of percent. Altogether, DM-tSZ cross correlations hold great promise for studying the baryons in the local Universe.
机译:几乎三分之一的宇宙的Baryons在低红移时是“缺失”,因为它们位于看不见的暖温度介质(Whim)中。测量等离子体压力线的线路的热阳光 - Zeldovich(TSZ)效应可能会检测到这种突发致力,尽管其预期信号隐藏在噪声下方。通过观察快速无线电突发(FRB)的脱丙分散措施(DMS) - 突发的优秀示踪剂,因为它们测量血浆的柱密度,无论其温度如何。在这里,我们建议将DMS和TSZ Maps交叉作为一种新的方式来查找和表征Whim中缺失的雷静音。我们的方法依赖于FRB的精确(〜Arcminute)角定位,以分配每个突发A DM和Y参数。我们预测来自呼吸致命的信号在〜10〜4 FRB的互相关分析中应该自信地检测到,预计将收集在即将到来的Chime和Hirax无线电阵列的一年内,确认最近的丝状透明度检测突发奇想。使用这种技术,未来的CMB探针(可能降低TSZ噪声)可以确定突发致病症的温度及其进化到几十的百分比内。总之,DM-TSZ交叉相关性对在本地宇宙中的比亚登进行了巨大的承担。

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