2011

Relative locality and the soccer ball problem

Amelino-Camelia, Giovanni, Freidel, Laurent, Kowalski-Glikman, Jerzy et al.

Understand

We consider the behavior of macroscopic bodies within the framework of relative locality, which is a recent proposal for Planck scale modifications of the relativistic dynamics of particles which are described as arising from deformations in the geometry of momentum space.

  • These lead to the addition of non-linear terms to the energy-momentum relations and conservation laws, which are suppressed by powers of ratio between the energy E of the particles involved and the Planck mass M_P.
  • We consider and resolve a common objection against such proposals, which is that, even if the corrections are small for elementary particles in current experiments, they are huge when applied to composite systems such as soccer balls, planets and stars, with energies E_{macro} much larger than M_P.
  • We show that this "soccer-ball problem" does not arise within the framework of relative locality, because the non-linear effects for the dynamics of a composite system with N elementary particles appear at most of order E_{macro}/ N M_{P}.

Built on

  • M. Maggiore, The Atick–Witten free energy, closed tachyon condensation and deformed Poincaré symmetry

    2002

    Earlier work this paper cites.

  • J. Magueijo and L. Smolin, Generalized Lorentz invariance with an invariant energy scale

    2003

    Earlier work this paper cites.

Similar

Then

  • J. Magueijo, “Could quantum gravity be tested with high intensity lasers?,” Phys. Rev. D 73

    2006

    Later among the works it cites.

  • S. Hossenfelder, Multiparticle states in deformed special relativity

    2007

    Later among the works it cites.

Beyond the bibliography

alphaXiv searches the wider corpus for related work and actual follow-ups.

Open on alphaXiv

alphaXiv is searching for related work…