The EoR2 field is within the most sensitive part of the MWA\u2019s field of view, with the Milky Way very close to the horizon. While the MW is not in the most sensitive part of the beam, it is still essential to understand how it is affecting what is seen of the EoR2 field.<\/i><\/p>\n<\/div>Combining the work of many of our MWA EoR group, as well as that of many other collaborating researchers and some high performance computing, has resulted in the below plot. This plot is used to characterise the size of the ionised bubbles that formed in the intergalactic medium around the first stars and galaxies, between 740 My to 830 My after the Big Bang (BB).<\/p>\n<\/div>
<\/span><\/div>To obtain this 1D power spectrum, 110 hours of good MWA observations of the EoR0 field have been used. Red represents observations at redshift 6.5 (740My after the BB), blue at redshift 6.8 and green at redshift 7.1 (830My after the BB). The solid lines are the power measured, the dotted lines are the theoretical power of the EoR.<\/i><\/p>\n<\/div>Comparing these newest results from the MWA with all the experiments since 2013 to search for the EoR signal gives the below plot, which show these new results have pushed the search closer than ever to the true EoR at low redshift.<\/p>\n<\/div>
<\/span><\/div><\/div><\/div>The new results are shown as inverted orange triangles with a purple boarder. Circles represent the typical expected EoR power levels. Other points cover all other published upper limits on the EoR signal.<\/i><\/p>\n<\/div>
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New Limits on Finding the First Stars and Galaxies - ASTRO 3D<\/title>\n \n \n \n \n \n \n \n \n \n \n\t \n\t \n\t \n \n \n \n\t \n\t \n\t \n