The Frequency of Low-Mass Exoplanets. III. Toward eta-Earth at Short Periods
arXiv:1103.4186 · doi:10.1088/0004-637X/738/1/81
Abstract
Determining the occurrence rate of terrestrial-mass planets (m_p < 10M_earth) is a critically important step on the path towards determining the frequency of Earth-like planets (eta-Earth), and hence the uniqueness of our Solar system. Current radial-velocity surveys, achieving precisions of 1 m/s, are able to detect terrestrial-mass planets and provide meaningful estimates of their occurrence rate. We present an analysis of 67 solar-type stars from the Anglo-Australian Planet Search specifically targeted for very high-precision observations. When corrected for incompleteness, we find that the planet occurrence rate increases sharply with decreasing planetary mass. Our results are consistent with those from other surveys: in periods shorter than 50 days, we find that 1.5% of stars host a giant (m_p > 100M_earth) planet, and that 18.5% of stars host a planet with m_p < 10M_earth. The preponderance of low-mass planets in short-period orbits is in conflict with formation simulations in which the majority of terrestrial-mass planets reside at larger orbital distances. This work gives a hint as to the size of eta-Earth, but to make meaningful predictions on the frequency of terrestrial planets in longer, potentially habitable orbits, low-mass terrestrial planet searches at periods of 100-200 days must be made an urgent priority for ground-based Doppler planet searches in the years ahead.
Submitted to ApJ, 2011 March 16
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
- Characteristics of Kepler Planetary Candidates Based on the First Data Set: The Majority are Found to be Neptune-Size and Smaller
- Detection Limits from the McDonald Observatory Planet Search Program
- The HARPS search for southern extra-solar planets. XIII. A planetary system with 3 Super-Earths (4.2, 6.9, & 9.2 Earth masses)
- The HARPS search for southern extra-solar planets. IX. mu Ara, a system with four planets
- A Search for Multi-Planet Systems Using the Hobby-Eberly Telescope
- The NASA-UC Eta-Earth Program: III. A Super-Earth orbiting HD 97658 and a Neptune-mass planet orbiting Gl 785
- On the Frequency of Jupiter Analogs
- Formation and Detectability of Terrestrial Planets Around Alpha Centauri B
- The Impact of Stellar Oscillations on Doppler Velocity Planet Searches
- The Frequency of Low-Mass Exoplanets. II. The `Period Valley'
- Forming Different Planetary Systems
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- Planet Occurrence within 0.25 AU of Solar-type Stars from Kepler
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- The Gemini NICI Planet-Finding Campaign: The Frequency of Giant Planets Around Debris Disk Stars
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- The Anglo-Australian Planet Search. XXIII. Two New Jupiter Analogs
- Signals embedded in the radial velocity noise. Periodic variations in the tau Ceti velocities
- A Double Planetary System around the Evolved Intermediate-Mass Star HD 4732
- Spitzer Observations of GJ3470b: a Very Low-density Neptune-size Planet Orbiting a Metal-rich M dwarf
- Solar System Physics for Exoplanet Research
- A Second Giant Planet in 3:2 Mean-Motion Resonance in the HD 204313 System
- Elemental Abundances of Solar Sibling Candidates
- The Dawes Review 3: The Atmospheres of Extrasolar Planets and Brown Dwarfs
- Exploring Kepler Giant Planets in the Habitable Zone
- ROPS: A New Search for Habitable Earths in the Southern Sky
- The K2-HERMES Survey. I. Planet Candidate Properties from K2 Campaigns 1-3
- Two New Long-Period Giant Planets from the McDonald Observatory Planet Search and Two Stars with Long-Period Radial Velocity Signals Related to Stellar Activity Cycles
- Characterization of potentially habitable planets: Retrieval of atmospheric and planetary properties from emission spectra
- The Pan-Pacific Planet Search VII: The most eccentric planet orbiting a giant star
- Truly eccentric. I. Revisiting eight single-eccentric planetary systems
- Microlensing events indicate that super-Earth exoplanets are common in Jupiter-like orbits
- The Pan-Pacific Planet Search VI: Giant planets orbiting HD 86950 and HD 222076
- The Pan-Pacific Planet Search. VIII. Complete results and the occurrence rate of planets around low-luminosity giants
- Pursuing the planet-debris disk connection: Analysis of upper limits from the Anglo-Australian Planet Search
- Quantifying the Influence of Jupiter on the Earth's Orbital Cycles
- Atmospheric constraints for the CO2 partial pressure on terrestrial planets near the outer edge of the habitable zone
- Predicting multiple planet stability and habitable zone companions in the TESS era
- Properties of the single Jovian planet population and the pursuit of Solar system analogues
- Stable habitable zones of single Jovian planet systems
- On the Possibility of Habitable Moons in the System of HD 23079: Results from Orbital Stability Studies
- Forming Different Planetary Systems
- Scientific Goals of the Kunlun Infrared Sky Survey (KISS)
- Spinning up a Daze: TESS Uncovers a Hot Jupiter orbiting the Rapid-Rotator TOI-778
- The Weihai Observatory search for close-in planets orbiting giant stars
- The role of Jupiter in driving Earth's orbital evolution: an update
- Combining Kepler and HARPS Occurrence Rates to Infer the Period-Mass-Radius Distribution of Super-Earths/Sub-Neptunes