CWRU PAT Coffee Agenda

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

+2 Testing Einstein's Equivalence Principle with Short Gamma-ray Bursts.

jbm120 +1 jtd55 +1

+1 Solving the Wrong Hierarchy Problem.

kxp265 +1

+1 Constraint on ghost-free bigravity from gravitational Cherenkov radiation.

jtd55 +1

+1 Planck 2016 intermediate results. XLVII. Planck constraints on reionization history.

mro28 +1

+1 Planck 2016 intermediate results. XLVI. Reduction of large-scale systematic effects in HFI polarization maps and estimation of the reionization optical depth.

cjc5 +1

0 Determining the progenitors of merging black-hole binaries.

bump   sxk1031 +1

Showing votes from 2016-05-10 11:30 to 2016-05-13 12:30 | Next meeting is Friday Aug 22nd, 11:30 am.

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astro-ph.HE

  • Testing Einstein's Equivalence Principle with Short Gamma-ray Bursts.- [PDF] - [Article]

    Yu Sang, Hai-Nan Lin, Zhe Chang
     

    Einstein's equivalence principle (EEP) can be tested by the time delay between photons with different energies passing through a gravitational field. As one of the most energetic explosions in the Universe, gamma-ray bursts (GRBs) provide an effective tool to test the accuracy of EEP. In this paper, we use the continuous spectra of 20 short GRBs detected by the Swift/BAT to test the validity of EEP. Taking the duration of GRBs as the upper limit of the time delay induced by EEP violation (assuming that the high energy photons arrive later than the low energy photons), the difference of the parameterized post-Newtonian parameter is constrained with high accuracy. The strictest constraint, $|\gamma(150~{\rm keV})-\gamma(15~{\rm keV})|<5.59\times 10^{-10}$ from GRB 150101B, is about $1\sim 2$ orders of magnitude tighter than previous constraints. Moreover, our result is more statistically significant than previous results because we use the continuous spectra instead of isolated photons.

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