CWRU PAT Coffee Agenda

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

+2 The observed spatial distribution of matter on scales ranging from 100kpc to 1Gpc is inconsistent with the standard dark-matter-based cosmological models.

jxs1325 +1 cjc5 +1

+1 Rainbows without unicorns: Metric structures in theories with Modified Dispersion Relations.

jtd55 +1

+1 Stability of Geodesically Complete Cosmologies.

lxj154 +1

+1 An automatically generated code for relativistic inhomogeneous cosmologies.

jbm120 +1

+1 Role of matter in extended quasidilaton massive gravity.

sxk1031 +1 bump  

+1 Pulsar timing can constrain primordial black holes in the LIGO mass window.

jtd55 +1

+1 KiDS-450: Testing extensions to the standard cosmological model.

jtd55 +1

0 A general relativistic signature in the galaxy bispectrum.

bump   jbm120 +1

Showing votes from 2016-10-14 12:30 to 2016-10-18 11:30 | Next meeting is Friday Aug 15th, 11:30 am.

users

  • No papers in this section today!

astro-ph.CO

  • Pulsar timing can constrain primordial black holes in the LIGO mass window.- [PDF] - [Article]

    Katelin Schutz, Adrian Liu
     

    The recent discovery of gravitational waves from merging black holes has generated interest in primordial black holes as a possible component of the dark matter. In this paper, we show that pulsar timing may soon have sufficient data to constrain $1$-$1000\,M_{\odot}$ primordial black holes via the non-detection of a third-order Shapiro time delay as the black holes move around the Galactic halo. We present the results of a Monte Carlo simulation which suggests that future data from known pulsars may be capable of constraining the PBH density more stringently than other existing methods in the mass range ~1-30$\,M_{\odot}$. We find that timing new pulsars discovered using the proposed Square Kilometre Array may constrain primordial black holes in this mass range to comprise less than ~1-10% of the dark matter.

  • KiDS-450: Testing extensions to the standard cosmological model.- [PDF] - [Article]

    Shahab Joudaki, Alexander Mead, Chris Blake, Ami Choi, Jelte de Jong, Thomas Erben, Catherine Heymans, Hendrik Hildebrandt, Henk Hoekstra, Benjamin Joachimi, Dominik Klaes, Fabian Köhlinger, Konrad Kuijken, John McFarland, Lance Miller, Peter Schneider, Massimo Viola
     

    We test extensions to the standard cosmological model with weak gravitational lensing tomography using 450 deg$^2$ of imaging data from the Kilo Degree Survey (KiDS). In these extended cosmologies, which include massive neutrinos, nonzero curvature, evolving dark energy, modified gravity, and running of the scalar spectral index, we also examine the discordance between KiDS and cosmic microwave background measurements from Planck. The discordance between the two datasets is largely unaffected by a more conservative treatment of the lensing systematics and the removal of angular scales most sensitive to nonlinear physics. The only extended cosmology that simultaneously alleviates the discordance with Planck and is at least moderately favored by the data includes evolving dark energy with a time-dependent equation of state (in the form of the $w_0-w_a$ parameterization). In this model, the respective $S_8 = \sigma_8 \sqrt{\Omega_{\rm m}/0.3}$ constraints agree at the $1\sigma$ level, and there is `substantial concordance' between the KiDS and Planck datasets when accounting for the full parameter space. Moreover, the Planck constraint on the Hubble constant is wider than in LCDM and in agreement with the Riess et al. (2016) direct measurement of $H_0$. The dark energy model is moderately favored as compared to LCDM when combining the KiDS and Planck measurements, and remains moderately favored after including an informative prior on the Hubble constant. In both of these scenarios, the dark energy parameters are discrepant with a cosmological constant at the $3\sigma$ level. Moreover, KiDS constrains the sum of neutrino masses to 4.0 eV (95% CL), finds no preference for time or scale dependent modifications to the metric potentials, and is consistent with flatness and no running of the spectral index. The analysis code is publicly available at https://github.com/sjoudaki/kids450

astro-ph.HE

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astro-ph.GA

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astro-ph.IM

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gr-qc

  • Rainbows without unicorns: Metric structures in theories with Modified Dispersion Relations.- [PDF] - [Article]

    Iarley P. Lobo, Niccoló Loret, Francisco Nettel
     

    "Rainbow" metrics are a widely used approach to metric formalism for theories with Modified Dispersion Relations. They have had a huge success in the Quantum Gravity Phenomenology literature, since they allow to introduce momentum-dependent spacetime metrics into the description of systems with Modified Dispersion Relation. This approach, however, presents some compatibility issues with a relativistic description, even in the case of introducing deformed spacetime symmetries to keep the theory's modified dispersion relation invariant. In this paper we would like to introduce the readers to this issue and to describe how the relativistic properties of the theory can be recovered taking into account a more complex (but also complete) momentum-space curvature framework. We also introduce a new metric structure from a Polyakov-like description of the action.

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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