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arXiv:hep-ph/0112161·v2·High Energy Physics — Phenomenology

Transplanckian Collisions at the LHC and Beyond

Gian F. Giudice🇨🇭 · Riccardo Rattazzi🇨🇭 · James D. Wells🇺🇸

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Abstract

Elastic collisions in the transplanckian region, where the center-of-mass energy is much larger than the fundamental gravity mass scale, can be described by linearized general relativity and known quantum-mechanical effects as long as the momentum transfer of the process is sufficiently small. For larger momentum transfer, non-linear gravitational effects become important and, although a computation is lacking, black-hole formation is expected to dominate the dynamics. We discuss how elastic transplanckian collisions can be used at high-energy colliders to study, in a quantitative and model-independent way, theories in which gravity propagates in flat extra dimensions. At LHC energies, however, incalculable quantum-gravity contributions may significantly affect the experimental signal.

Comments: 45 pages, 9 figures. v2: added refs and expanded discussion of fixed-angle string scattering

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