A New Channel for the Detection of Planetary Systems Through Microlensing: I. Isolated Events Due to Planet Lenses
arXiv:astro-ph/9808075 · doi:10.1086/306814
Abstract
We propose and evaluate the feasibility of a new strategy to search for planets via microlensing. This new strategy is designed to detect planets in "wide" orbits, i.e., with orbital separation, greater than . Planets in wide orbits may provide the dominant channel for the microlensing discovery of planets, particularly low-mass (e.g., Earth-mass) planets. This paper concentrates on events in which a single planet serves as a lens, leading to an isolated event of short duration. We point out that a distribution of events due to lensing by stars with wide-orbit planets is necessarily accompanied by a distribution of shorter- duration events. The fraction of events in the latter distribution is proportional to the average value of , where is the ratio between \pl and stellar masses. The position of the peak or peaks also provides a measure of the mass ratios typical of planetary systems. We study detection strategies that can optimize our ability to discover isolated short-duration events due to lensing by planets, and find that monitoring employing sensitive photometry is particularly useful. If planetary systems similar to our own are common, even modest changes in detection strategy should lead to the discovery of a few isolated events of short duration every year. We therefore also address the issue of the contamination due to stellar populations of any microlensing signal due to low-mass MACHOs. We describe how, even for isolated events of short duration, it will be possible to test the hypothesis that the lens was a planet instead of a low-mass MACHO, if the central star of the planetary system contributes a measurable fraction of the baseline flux.
37 pages, 6 figure. To be published in the Astrophysical Journal. This is part one of a series of papers on microlensing by planetary systems containing wide-orbit planets; the series represents a reorganization and extension of astro-ph/9711013
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- Microlensing of an Elliptical Source by a Point Mass
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- Binary Microlensing Events from the MACHO Project
- On Planetary Companions to the MACHO-98-BLG-35 Microlens Star
- Detection Efficiencies of Microlensing Datasets to Stellar and Planetary Companions
- A New Channel for the Detection of Planetary Systems Through Microlensing: I. Isolated Events Due to Planet Lenses
- Microlensing Characterization of Wide-Separation Planets
- Probing the Spatial Distribution of Extrasolar Planets with Gravitational Microlensing
- A New Channel for the Detection of Planetary Systems Through Microlensing: II. Repeating Events
- Short-duration lensing events: II. Expectations and Protocols
- Microlensing by a wide-separation planet: detectability and boundness
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- Nearby Planetary Systems As Lenses During Predicted Close Passages to Background Stars
- The Invisible Majority? Evolution and Detection of Outer Planetary Systems without Gas Giants
- An Observational Test for the Anthropic Origin of the Cosmological Constant
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- Discovering habitable Earths, hot Jupiters and other close planets with microlensing
- Interpreting the M22 Spike Events
- Beyond Caustic Crossings: Properties of Binary Microlensing Light Curves
- A Multi-Parameter Degeneracy in Microlensing Events with Extreme Finite Source Effects