CWRU PAT Coffee Agenda

Tuesdays 10:30 - 11:30 | Fridays 11:30 - 12:30

+2 The Radial Acceleration Relation and a Magnetostatic Analogy in Quasilinear MOND.

jxs1325 +1 sxk1031 +1

+1 Fast Cosmic Web Simulations with Generative Adversarial Networks.

mro28 +1

+1 Concordance cosmology without dark energy

jtd55 +1

+1 The integrated Sachs-Wolfe effect in the AvERA cosmology.

jtd55 +1

+1 Asymmetric dark matter, baryon asymmetry and lepton number violation.

pxf112 +1

0 Beyond dRGT as Mimetic Massive.

bump   jtd55 +2

0 dRGT Massive Gravity is not Unique.

bump   jtd55 +1

Showing votes from 2018-01-26 12:30 to 2018-01-30 11:30 | Next meeting is Tuesday Aug 12th, 10:30 am.

users

  • No papers in this section today!

astro-ph.CO

  • The integrated Sachs-Wolfe effect in the AvERA cosmology.- [PDF] - [Article]

    Róbert Beck, István Csabai, Gábor Rácz, István Szapudi
     

    The recent AvERA cosmological simulation of R\'acz et al. (2017) has a $\Lambda \mathrm{CDM}$-like expansion history and removes the tension between local and Planck (cosmic microwave background) Hubble constants. We contrast the AvERA prediction of the integrated Sachs--Wolfe (ISW) effect with that of $\Lambda \mathrm{CDM}$. The linear ISW effect is proportional to the derivative of the growth function, thus it is sensitive to small differences in the expansion histories of the respective models. We create simulated ISW maps tracing the path of light-rays through the Millennium XXL cosmological simulation, and perform theoretical calculations of the ISW power spectrum. AvERA predicts a significantly higher ISW effect than $\Lambda \mathrm{CDM}$, $A=1.93-5.29$ times larger depending on the $l$ index of the spherical power spectrum, which could be utilized to definitively differentiate the models. We also show that AvERA predicts an opposite-sign ISW effect in the redshift range $z \approx 1.5 - 4.4$, in clear contrast with $\Lambda \mathrm{CDM}$. Finally, we compare our ISW predictions with previous observations. While at present these cannot distinguish between the two models due to large error bars, and lack of internal consistency suggesting systematics, ISW probes from future surveys will tightly constrain the models.

astro-ph.HE

  • No papers in this section today!

astro-ph.GA

  • No papers in this section today!

astro-ph.IM

  • No papers in this section today!

gr-qc

  • No papers in this section today!

hep-ph

  • No papers in this section today!

hep-th

  • No papers in this section today!

hep-ex

  • No papers in this section today!

quant-ph

  • No papers in this section today!

other

  • No papers in this section today!