English

Transiting planets as a precision clock to constrain the time variation of the gravitational constant

General Relativity and Quantum Cosmology 2016-03-21 v1 Cosmology and Nongalactic Astrophysics Earth and Planetary Astrophysics

Abstract

Analysis of transit times in exoplanetary systems accurately provides an instantaneous orbital period, P(t)P(t), of their member planets. A long-term monitoring of those transiting planetary systems puts limits on the variability of P(t)P(t), which are translated into the constraints on the time variation of the gravitational constant GG. We apply this analysis to 1010 transiting systems observed by the Kepler spacecraft, and find that ΔG/G5×106\Delta G/G\lesssim 5\times10^{-6} for 2009-2013, or G˙/G106yr1\dot{G}/G \lesssim 10^{-6}\,\mathrm{yr}^{-1} if G˙\dot{G} is constant. While the derived limit is weaker than those from other analyses, it is complementary to them and can be improved by analyzing numerous transiting systems that are continuously monitored.

Keywords

Cite

@article{arxiv.1602.02513,
  title  = {Transiting planets as a precision clock to constrain the time variation of the gravitational constant},
  author = {Kento Masuda and Yasushi Suto},
  journal= {arXiv preprint arXiv:1602.02513},
  year   = {2016}
}

Comments

9 pages, 4 figures, accepted for publication in PASJ