CWRU PAT Coffee Agenda

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

+2 Unbraiding the Bounce: superluminality around the corner.

kxp265 +1 lxj154 +1

+1 Caustic Formation upon Shift Symmetry Breaking.

jxs1325 +1 lxj154 +1

+1 An infinite set of soft theorems in gauge/gravity theories as Ward-Takahashi identities.

jjb239 +1

+1 Looking for a new test of general relativity in the solar system.

jtd55 +1

+1 The outflow structure of GW170817 from late time broadband observations.

jtd55 +1

0 Discovery of a new fundamental plane dictating galaxy cluster evolution from gravitational lensing.

bump   jxs1325 +1

Showing votes from 2018-01-19 12:30 to 2018-01-23 11:30 | Next meeting is Friday Aug 15th, 11:30 am.

users

  • No papers in this section today!

astro-ph.CO

  • Limit on graviton mass from galaxy cluster Abell 1689.- [PDF] - [Article] - [UPDATED]

    Shantanu Desai
     

    To date, the only limit on graviton mass using galaxy clusters was obtained by Goldhaber and Nieto in 1974, using the fact that the orbits of galaxy clusters are bound and closed, and extend up to 580 kpc. From positing that only a Newtonian potential gives rise to such stable bound orbits, a limit on the graviton mass $m_g<10^{-29}$ eV was obtained (PRD 9,1119, 1974). Recently, it has been shown that one can obtain closed bound orbits for Yukawa potential (arXiv:1705.02444), thus invalidating the main \emph{ansatz} used in Goldhaber and Nieto to obtain the graviton mass bound. In order to obtain a revised estimate using galaxy clusters, we use dynamical mass models of the Abell 1689 (A1689) galaxy cluster to check their compatibility with a Yukawa gravitational potential. We assume mass models for the gas, dark matter, and galaxies for A1689 from arXiv:1703.10219 and arXiv:1610.01543, who used this cluster to test various alternate gravity theories, which dispense with the need for dark matter. We quantify the deviations in the acceleration profile using these mass models assuming a Yukawa potential and that obtained assuming a Newtonian potential by calculating the $\chi^2$ residuals between the two profiles. Our estimated bound on the graviton mass ($m_g$) is thereby given by, $m_g < 1.37 \times 10^{-29}$ eV or in terms of the graviton Compton wavelength of, $\lambda_g>9.1 \times 10^{19}$ km at 90\% confidence level.

astro-ph.HE

  • The outflow structure of GW170817 from late time broadband observations.- [PDF] - [Article]

    E. Troja, L. Piro, G. Ryan, H. van Eerten, R. Ricci, M. Wieringa, S. Lotti, T. Sakamoto, S. B. Cenko
     

    We present our broadband study of GW170817 from radio to hard X-rays, including Chandra and NuStar observations, and a multi-messenger analysis including LIGO constraints. The data are compared with predictions from a wide range of models, providing the first detailed comparison between non-trivial cocoon and jet models. Homogeneous and power-law shaped jets, as well as simple cocoon models are ruled out by the data, while both a Gaussian shaped jet and a cocoon with energy injection are found to be consistent with the present data. We propose that these models can be unambiguously discriminated by future observations measuring the post-peak behaviour, with temporal slope -1.2 for the cocoon and -2.5 for the jet model.

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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