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proceeding

Cosmology on the Largest Scales with the SKA

S. CameraCalifornia Institute of Technology , Pasadena , CA 91125 , USA;Alvise RaccanelliJet Propulsion Laboratory, California Institute of TechnologyPhilip BullUniversity of Oslo#TAB#Daniele BertaccaDepartment of Physics , University of the Western Cape , Cape Town 7535 , South Africa;Xuelei ChenNational Astronomical Observatories , Chinese Academy of Sciences , Beijing 100012 , China;Pedro G. FerreiraAstrophysics , Physics Department , University of Oxford , Oxford OX1 3RH , UK;M. KunzAfrican Institute for Mathematical Sciences , Cape Town 7945 , South Africa;Roy MaartensDepartment of Physics , University of the Western Cape , Cape Town 7535 , South Africa;Yi MaoInstitute of Cosmology & Gravitation , University of Portsmouth , Portsmouth P01 3FX , UK;Mário G. SantosUniversity of LisbonPaul R. ShapiroUniversity of Texas at Austin#TAB#Matteo VielOsservatorio Astronomico di TriesteYidong XuINFN , Sezione di Trieste , 34100 Trieste , Italy
2015en
ABI

Аннотация

The study of the Universe on ultra-large scales is one of the major science cases for the Square Kilometre Array (SKA).The SKA will be able to probe a vast volume of the cosmos, thus representing a unique instrument, amongst next-generation cosmological experiments, for scrutinising the Universe's properties on the largest cosmic scales.Probing cosmic structures on extremely large scales will have many advantages.For instance, the growth of perturbations is well understood for those modes, since it falls fully within the linear régime.Also, such scales are unaffected by the poorly understood feedback of baryonic physics.On ultra-large cosmic scales, two key effects become significant: primordial non-Gaussianity and relativistic corrections to cosmological observables.Moreover, if late-time acceleration is driven not by dark energy but by modifications to general relativity, then such modifications should become apparent near and above the horizon scale.As a result, the SKA is forecast to deliver transformational constraints on non-Gaussianity and to probe gravity on super-horizon scales for the first time. Advancing Astrophysics with the Square Kilometre Array

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