Extending the Planetary Mass Function to Earth Mass by Microlensing at Moderately High Magnification
arXiv:1303.4123 · doi:10.1093/mnras/stt318
Abstract
A measurement by microlensing of the planetary mass function of planets with masses ranging from 5M_E to 10M_J and orbital radii from 0.5 to 10 AU was reported recently. A strategy for extending the mass range down to (1-3)M_E is proposed here. This entails monitoring the peaks of a few tens of microlensing events with moderately high magnifications with 1-2m class telescopes. Planets of a few Earth masses are found to produce deviations of ~ 5% to the peaks of microlensing light curves with durations ~ (0.7-3)hr in events with magnification ~ 100 if the projected separation of the planet lies in the annular region (0.85-1.2)r_E. Similar deviations are produced by Earth mass planets in the annular region (0.95-1.05)r_E. It is possible that sub-Earths could be detected very close to the Einstein ring if they are sufficiently abundant, and also planetary systems with more than one low mass planet.
12 pages, 20 figures (in press) MNRAS (2013)
References in corpus (13)
- Characteristics of planetary candidates observed by Kepler, II: Analysis of the first four months of data
- The Occurrence and Mass Distribution of Close-in Super-Earths, Neptunes, and Jupiters
- One or more bound planets per Milky Way star from microlensing observations
- Unbound or Distant Planetary Mass Population Detected by Gravitational Microlensing
- Discovery of a Jupiter/Saturn Analog with Gravitational Microlensing
- Microlens OGLE-2005-BLG-169 Implies Cool Neptune-Like Planets are Common
- A Low-Mass Planet with a Possible Sub-Stellar-Mass Host in Microlensing Event MOA-2007-BLG-192
- MOA-2011-BLG-293Lb: A test of pure survey microlensing planet detections
- MOA-2009-BLG-387Lb: A massive planet orbiting an M dwarf
- Discovery and Mass Measurements of a Cold, 10-Earth Mass Planet and Its Host Star
- The second multiple-planet system discovered by microlensing: OGLE-2012-BLG-0026Lb, c, a pair of jovian planets beyond the snow line
- MOA-2010-BLG-477Lb: constraining the mass of a microlensing planet from microlensing parallax, orbital motion and detection of blended light
- A sub-Saturn Mass Planet, MOA-2009-BLG-319Lb
Cited by in corpus (10)
- The Lowest Mass Ratio Planetary Microlens: OGLE 2016-BLG-1195Lb
- Microlensing Searches for Exoplanets
- OGLE-2012-BLG-0950Lb: The First Planet Mass Measurement from Only Microlens Parallax and Lens Flux
- Microlensing Parallax for OGLE-2017-BLG-0896 Reveals a Counter-Rotating Low-Mass Brown Dwarf
- Can the masses of isolated planetary-mass gravitational lenses be measured by terrestrial parallax?
- Systematic KMTNet Planetary Anomaly Search. VIII. Complete Sample of 2019 Subprime Field Planets
- KMT-2019-BLG-0842Lb: A Cold Planet Below the Uranus/Sun Mass Ratio
- OGLE-2019-BLG-0960Lb: The Smallest Microlensing Planet
- An Earth-mass Planet in a Time of Covid-19: KMT-2020-BLG-0414Lb
- LensNet: Enhancing Real-time Microlensing Event Discovery with Recurrent Neural Networks in the Korea Microlensing Telescope Network