On-shell techniques and universal results in quantum gravity

被引:0
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作者
N. E. J. Bjerrum-Bohr
John F. Donoghue
Pierre Vanhove
机构
[1] The Niels Bohr Institute,Niels Bohr International Academy and Discovery Center
[2] University of Massachusetts,Department of Physics
[3] CEA,undefined
[4] DSM,undefined
[5] Institut de Physique Théorique,undefined
[6] IPhT,undefined
[7] CNRS,undefined
[8] MPPU,undefined
[9] URA2306,undefined
[10] Institut des Hautes Études Scientifiques Bures sur Yvette,undefined
来源
Journal of High Energy Physics | / 2014卷
关键词
Scattering Amplitudes; Models of Quantum Gravity; Gauge Symmetry;
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摘要
We compute the leading post-Newtonian and quantum corrections to the Coulomb and Newtonian potentials using the full modern arsenal of on-shell techniques; we employ spinor-helicity variables everywhere, use the Kawai-Lewellen-Tye (KLT) relations to derive gravity amplitudes from gauge theory and use unitarity methods to extract the terms needed at one-loop order. We stress that our results are universal and thus will hold in any quantum theory of gravity with the same low-energy degrees of freedom as we are considering. Previous results for the corrections to the same potentials, derived historically using Feynman graphs, are verified explicitly, but our approach presents a huge simplification, since starting points for the computations are compact and tedious index contractions and various complicated integral reductions are eliminated from the onset, streamlining the derivations. We also analyze the spin dependence of the results using the KLT factorization, and show how the spinless corrections in the framework are easily seen to be independent of the interacting matter considered.
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