Simulation of a space-based microlensing survey for terrestrial extrasolar planets

被引:131
|
作者
Bennett, DP [1 ]
Rhie, SH [1 ]
机构
[1] Univ Notre Dame, Dept Phys, Notre Dame, IN 46556 USA
来源
ASTROPHYSICAL JOURNAL | 2002年 / 574卷 / 02期
关键词
dark matter; gravitational lensing;
D O I
10.1086/340977
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We show that a space-based gravitational microlensing survey for terrestrial extrasolar planets is feasible in the near future and could provide a nearly complete picture of the properties of planetary systems in our Galaxy. We present simulations of such a survey using a 1-2 m aperture space telescope with a similar to2 deg(2) field of view to continuously monitor similar to10(8) Galactic bulge main-sequence stars. The microlensing techniques allow the discovery of low-mass planets with high signal-to-noise ratio, and the space missions that we have studied are sensitive to planets with masses as low as that of Mars. By targeting main-sequence source stars, which can only be resolved from space, the space-based microlensing survey is able to detect enough light from the lens stars to determine the spectral type of none-third of the lens stars with detected planets, including virtually all of the F,G, and K stars, which comprise one-quarter of the event sample. This enables the determination of the planetary masses and separations in physical units as well as the abundance of planets as a function of stellar type and distance from the Galactic center. We show that a space-based microlensing planet search program has its highest sensitivity to planets at orbital separations of 0.7-10 AU, but it will also have significant sensitivity at larger separations and will be able to detect free-floating planets in significant numbers. This complements the planned terrestrial planet transit missions, which are sensitive to terrestrial planets at separations of less than or equal to1 AU. Such a mission should also detect similar to50,000 giant planets via transits, and it is, therefore, the only proposed planet detection method that is sensitive to planets at all orbital radii.
引用
收藏
页码:985 / 1003
页数:19
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