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Classical and quantum gravity effects from planckian energy superstring collisions

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TLDR
The authors showed that superstring collisions at Planckian energies and small deflection angles are calculable through an evaluation and resummation of string loops in flat space-time, leading to a systematic expansion of the collision in classical general relativity and quantum string effects.
Abstract
We argue that superstring collisions at Planckian energies and small deflection angles are calculable through an evaluation and resummation of string loops in flat space-time. This leads to a systematic expansion of the collision in classical general relativity and quantum string effects. Our results explicitly show how unitarity constraints are recovered through loop corrections and how flat metric calculations reveal the generation of nontrivial geometries by energetic particles. Finite-string-size effects can be evaluated in some regimes and are found to modify classical relativity expectations even at impact parameters much larger than the string scale. Conversely, we find that, through the resummation of large genus contributions, intermediate distance physics provides important classical relativity effects even in the hard, fixed angle regime.

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Journal ArticleDOI

Black holes and the butterfly effect

TL;DR: In this article, the authors used holography to study sensitive dependence on initial conditions in strongly coupled field theories and showed that the effect of the early infalling quanta relative to the t = 0 slice creates a shock wave that destroys the local two-sided correlations present in the unperturbed state.
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Can spacetime be probed below the string size

TL;DR: In this paper, it was shown that if the energy is not so extreme to cause a gravitational instability and when the scattering angle approaches some critical value from below, the distance starts increasing, thus departing from the usual position-momentum uncertainty relation, and in no instance is the resolution smaller than the string length.
Journal ArticleDOI

A generalized uncertainty principle in quantum gravity

Michele Maggiore
- 29 Jan 1993 - 
TL;DR: In this paper, a Gedanken experiment for the measurement of the area of the apparent horizon of a black hole in quantum gravity is described, and a generalized uncertainty principle is established for the existence of such an object.
Journal ArticleDOI

Loop Quantum Gravity

TL;DR: A general overview of ideas, techniques, results and open problems of this candidate theory of quantum gravity is provided, and a guide to the relevant literature is provided.
Journal ArticleDOI

The pre-big bang scenario in string cosmology

TL;DR: In this paper, physical motivations, phenomenological consequences, and open problems of the so-called pre-big bang scenario in superstring cosmology are reviewed, as well as some open problems.
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