CWRU PAT Coffee Agenda

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

+2 Horndeski: beyond, or not beyond?.

jtd55 +1 aam80 +1

+2 Positive Signs in Massive Gravity.

jtd55 +1 aam80 +1

+1 Lectures on General Theory of Relativity.

jtd55 +1

+1 The Status of Cosmic Topology after Planck Data.

cad96 +1

+1 Pulsar timing signal from ultralight axion in $f(R)$ theory.

jtd55 +1

+1 Vacua of the gravitational field.

sxz353 +1

+1 Entangled Scalar and Tensor Fluctuations during Inflation.

gds6 +1

+1 {\it N}-body Simulations of $\gamma$ Gravity.

jbm120 +1

+1 TikZ-Feynman: Feynman diagrams with TikZ.

qxc76 +1

+1 No hair theorem in quasi-dilaton massive gravity.

aam80 +1

+1 Degenerate higher derivative theories beyond Horndeski: evading the Ostrogradski instability

jtd55 +1

+1 Constraining dark matter properties with Cosmic Microwave Background observations.

mro28 +1

+1 Living with ghosts in Horava-Lifshitz gravity.

aam80 +1

Showing votes from 2016-01-19 11:30 to 2016-01-22 12:30 | Next meeting is Tuesday May 12th, 10:30 am.

users

  • No papers in this section today!

astro-ph.CO

  • Constraining dark matter properties with Cosmic Microwave Background observations.- [PDF] - [Article]

    Daniel B. Thomas, Michael Kopp, Constantinos Skordis
     

    We examine how the properties of dark matter, parameterised by an equation of state parameter $w$ and two perturbative Generalised Dark Matter (GDM) parameters $c^2_s$ (the sound speed) and $c^2_\text{vis}$ (the viscosity), are constrained by existing cosmological data, particularly the Planck 2015 data release. We find that the GDM parameters are consistent with zero, and are strongly constrained, showing no evidence for extending the dark matter model beyond the Cold Dark Matter (CDM) paradigm. The dark matter equation of state is constrained to be within $-0.000896<w<0.00238$ at the $3\sigma$ level which is several times stronger than constraints found previously using WMAP data. The parameters $c^2_s$ and $c^2_\text{vis}$ are constrained to be less than $3.21\times10^{-6}$ and $6.06\times10^{-6}$ respectively at the $3\sigma$ level. The inclusion of the GDM parameters does significantly affect the error bars on several $\Lambda$CDM parameters, notably the dimensionless dark matter density $\omega_g$ and the derived parameters $\sigma_8$ and $H_0$. This can be partially alleviated with the inclusion of data constraining the expansion history of the universe.

  • Living with ghosts in Horava-Lifshitz gravity.- [PDF] - [Article]

    S. Ramazanov, F. Arroja, M. Celoria, S. Matarrese, L. Pilo
     

    We consider the branch of the projectable Horava-Lifshitz model which exhibits ghost instabilities in the low energy limit. It turns out that, due to the Lorentz violating structure of the model and to the presence of a finite strong coupling scale, the vacuum decay rate into photons is tiny in a wide range of phenomenologically acceptable parameters. The strong coupling scale, understood as a cutoff on ghosts' spatial momenta, can be raised up to $\Lambda \sim 10$ TeV. At lower momenta, the projectable Horava-Lifshitz gravity is equivalent to General Relativity supplemented by a fluid with a small positive sound speed squared (10^{-42} \lesssim) c^2_s \lesssim 10^{-20}, that could be a promising candidate for the Dark Matter. Despite these advantages, the unavoidable presence of the strong coupling obscures the implementation of the original Ho\v{r}ava's proposal on quantum gravity. The low energy projectable Horava-Lifshitz gravity can be also related to mimetic dark matter, where the analogue of the projectability condition is achieved by a non-invertible conformal transformation of the metric.

astro-ph.HE

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astro-ph.GA

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astro-ph.IM

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gr-qc

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hep-ph

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hep-th

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hep-ex

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quant-ph

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other

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