English

Science Parametrics for Missions to Search for Earthlike Exoplanets by Direct Imaging

Instrumentation and Methods for Astrophysics 2015-06-18 v2 Earth and Planetary Astrophysics

Abstract

We use NtN_{t}, the number of exoplanets observed in time tt, as a science metric to study direct-search missions like Terrestrial Planet Finder. In our model, NN has 27 parameters, divided into three categories: 2 astronomical, 7 instrumental, and 18 science-operational. For various "27-vectors" of those parameters chosen to explore parameter space, we compute design reference missions to estimate NtN_{t}. Our treatment includes the recovery of completeness cc after a search observation, for revisits, solar and antisolar avoidance, observational overhead, and follow-on spectroscopy. Our baseline 27-vector has aperture D=16D = 16m, inner working angle IWA=0.039IWA = 0.039'', mission time t=05t = 0-5 years, occurrence probability for earthlike exoplanets η=0.2\eta = 0.2, and typical values for the remaining 23 parameters. For the baseline case, a typical five-year design reference mission has an input catalog of \sim4700 stars with nonzero completeness, \sim1300 unique stars observed in \sim2600 observations, of which \sim1300 are revisits, and it produces N150N_{1}\sim50 exoplanets after one year and N5130N_{5}\sim130 after five years. We explore offsets from the baseline for ten parameters. We find that NN depends strongly on IWAIWA and only weakly on DD. It also depends only weakly on zodiacal light for Z<50Z < 50 zodis, end-to-end efficiency for h>0.2h > 0.2, and scattered starlight for ζ<1010\zeta < 10^{-10}. We find that observational overheads, completeness recovery and revisits, solar and antisolar avoidance, and follow-on spectroscopy are all important factors in estimating NN.

Keywords

Cite

@article{arxiv.1402.2612,
  title  = {Science Parametrics for Missions to Search for Earthlike Exoplanets by Direct Imaging},
  author = {Robert A. Brown},
  journal= {arXiv preprint arXiv:1402.2612},
  year   = {2015}
}

Comments

37 pages, 11 figures, 11 tables; ApJ accepted version