English

Exploring the Nature of Gravity

General Relativity and Quantum Cosmology 2016-02-09 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Theory

Abstract

I clarify the differences between various approaches in the literature which attempt to link gravity and thermodynamics. I then describe a new perspective based on the following features: (1) As in the case of any other matter field, the gravitational field equations should also remain unchanged if a constant is added to the Lagrangian; in other words, the field equations of gravity should remain invariant under the transformation TbaTba+δbaT^a_b \to T^a_b + \delta^a_b (constant). (2) Each event of spacetime has a certain number (ff) of microscopic degrees of freedom (`atoms of spacetime'). This quantity ff is proportional to the area measure of an equi-geodesic surface, centered at that event, when the geodesic distance tends to zero. The spacetime should have a zero-point length in order for ff to remain finite. (3) The dynamics is determined by extremizing the heat density at all events of the spacetime. The heat density is the sum of a part contributed by matter and a part contributed by the atoms of spacetime, with the latter being LP4fL_P^{-4} f. The implications of this approach are discussed.

Keywords

Cite

@article{arxiv.1602.01474,
  title  = {Exploring the Nature of Gravity},
  author = {T. Padmanabhan},
  journal= {arXiv preprint arXiv:1602.01474},
  year   = {2016}
}

Comments

Elaborates on the results presented in five recent talks: Keynote address in (i) EmQM15, Vienna, 23-25 Oct, 2015; Plenary talks in (ii) 35th Max Born Symposium - The Planck Scale II, Wroclaw, 7-12 Sept, 2015 and (iii) ICGC-2015, Mohali, 14-16 Dec 2015; Colloquia at (iv) IAP, Paris, 30 Oct 2015 and (v) TIFR, Mumbai, 5 Oct 2015; two figures, 26 pages

R2 v1 2026-06-22T12:43:09.197Z