| Literature DB >> 30930684 |
Alberto Salvio1, Alessandro Strumia1,2, Hardi Veermäe1,3.
Abstract
4-Derivative gravity provides a renormalizable theory of quantum gravity at the price of introducing a physical ghost, which could admit a sensible positive-energy quantization. To understand its physics, we compute ghost-mediated scatterings among matter particles at tree-level, finding a new power-like infra-red enhancement typical of 4-derivative theories, that we dub 'ghostrahlung'. Super-Planckian scatterings get downgraded to Planckian by radiating hard gravitons and ghosts, which are weakly coupled and carry away the energy.Entities:
Year: 2018 PMID: 30930684 PMCID: PMC6405058 DOI: 10.1140/epjc/s10052-018-6311-1
Source DB: PubMed Journal: Eur Phys J C Part Fields ISSN: 1434-6044 Impact factor: 4.590
Fig. 1Sample of gravi-ghost-mediated process: the differential distribution of is used to infer the cross section for
Fig. 2A generic process among matter particles mediated by one gravi-ghost, denoted as a double wave
Fig. 3A sample process. The second diagram, computed with real (Minkowskian) moments, has an IR power enhancement at large gravi-ghost momenta,