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- W2315697926 abstract "Without doubts the most challenging problem of high energy physics is to complete the unfinished revolution that started with the formulation of general relativity and quantum mechanics in the first decades of twenties century. For many years however quantum gravity has been associated only with strong gravitational field regime in the vicinity of space-time singularities, e.g., with effects taking place just after (or before) the big bang or inside black holes. This state of affairs made it impossible to have any reasonable hope to test quantum gravitational effects in a foreseeable future. It was estimated that a particle accelerator in which we could test Planck scale scattering should be of the size of Earth orbit. The status of quantum gravity phenomenology changed substantially with the observation1, 2 that there is a hope that one may observe imprints of quantum gravity in experiments that already are or soon will be within the reach of current observational technologies. Most notably one expects that we may see traces of quantum gravity in kinematics of ultra-high energy cosmic rays scaterrings (violation of the GZK bound), as well as in the time-of-flight experiments. It should be stressed that this new quantum gravity phenomenology paradigm concerns minute effects of quantum gravity that are present already in the flat space limit. Moreover these effects are of the kinematical and not dynamical origin, namely they concern interaction of test particles with flat space-time solution of quantum gravity, which is assumed to lead to a theory that is somehow different from the standard Special Relativity." @default.
- W2315697926 created "2016-06-24" @default.
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- W2315697926 date "2006-02-01" @default.
- W2315697926 modified "2023-09-27" @default.
- W2315697926 title "DOUBLY SPECIAL RELATIVITY AND QUANTUM GRAVITY PHENOMENOLOGY" @default.
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- W2315697926 doi "https://doi.org/10.1142/9789812704030_0072" @default.
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