4.4 Article

Carroll versus Galilei gravity

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 3, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP03(2017)165

关键词

Space-Time Symmetries; Classical Theories of Gravity

资金

  1. Generalitat de Catalunya [FPA2013-46570-C2-1-P, 2014-SGR-104]
  2. Spanish goverment (MINECO/FEDER) of ICCUB (Unidad de Excelencia Maria de Maeztu) [MDM-2014-0369]

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We consider two distinct limits of General Relativity that in contrast to the standard non-relativistic limit can be taken at the level of the Einstein-Hilbert action instead of the equations of motion. One is a non-relativistic limit and leads to a so- called Galilei gravity theory, the other is an ultra-relativistic limit yielding a so-called Carroll gravity theory. We present both gravity theories in a first-order formalism and show that in both cases the equations of motion (i) lead to constraints on the geometry and (ii) are not su ffi cient to solve for all of the components of the connection fi elds in terms of the other fields. Using a second-order formalism we show that these independent components serve as Lagrange multipliers for the geometric constraints we found earlier. We point out a few noteworthy differences between Carroll and Galilei gravity and give some examples of matter couplings.

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