English

Detecting Earth-Mass Planets with Gravitational Microlensing

Astrophysics 2011-04-21 v1

Abstract

We show that Earth mass planets orbiting stars in the Galactic disk and bulge can be detected by monitoring microlensed stars in the Galactic bulge. The star and its planet act as a binary lens which generates a lightcurve which can differ substantially from the lightcurve due only to the star itself. We show that the planetary signal remains detectable for planetary masses as small as an Earth mass when realistic source star sizes are included in the lightcurve calculation. These planets are detectable if they reside in the ``lensing zone" which is centered between 1 and 4 AU from the lensing star and spans about a factor of 2 in distance. If we require a minimum deviation of 4\% from the standard point-lens microlensing lightcurve, then we find that more than 2\% of all \mearth\mearth planets and 10\% of all 10\mearth10\mearth in the lensing zone can be detected. If a third of all lenses have no planets, a third have 1\mearth1\mearth planets and the remaining third have 10\mearth10\mearth planets then we estimate that an aggressive ground based microlensing planet search program could find one earth mass planet and half a dozen 10\mearth10\mearth planets per year.

Keywords

Cite

@article{arxiv.astro-ph/9603158,
  title  = {Detecting Earth-Mass Planets with Gravitational Microlensing},
  author = {David P. Bennett and Sun Hong Rhie},
  journal= {arXiv preprint arXiv:astro-ph/9603158},
  year   = {2011}
}

Comments

9 pages, AAS latex, epsf, 5 figures (postscript), 2 additional color postscript figures available at ftp://igpp.llnl.gov/pub/bennett/em_planet

R2 v1 2026-07-22T09:28:37.488Z