Literature DB >> 29375142

A SEARCH FOR LOST PLANETS IN THE KEPLER MULTI-PLANET SYSTEMS AND THE DISCOVERY OF A LONG PERIOD, NEPTUNE-SIZED EXOPLANET KEPLER-150 F.

Joseph R Schmitt1, Jon M Jenkins2, Debra A Fischer1.   

Abstract

The vast majority of the 4700 confirmed planets and planet candidates discovered by the Kepler space telescope were first found by the Kepler pipeline. In the pipeline, after a transit signal is found, all data points associated with those transits are removed, creating a "Swiss cheese"-like light curve full of holes, which is then used for subsequent transit searches. These holes could render an additional planet undetectable (or "lost"). We examine a sample of 114 stars with 3+ confirmed planets to see the effect that this "Swiss cheesing" may have. A simulation determined that the probability that a transiting planet is lost due to the transit masking is low, but non-neglible, reaching a plateau at ~3.3% lost in the period range of P = 400 - 500 days. We then model the transits in all quarters of each star and subtract out the transit signals, restoring the in-transit data points, and use the Kepler pipeline to search the transit-subtracted (i.e., transit-cleaned) light curves. However, the pipeline did not discover any credible new transit signals. This demonstrates the validity and robustness of the Kepler pipeline's choice to use transit masking over transit subtraction. However, a follow-up visual search through all the transit-subtracted data, which allows for easier visual identification of new transits, revealed the existence of a new, Neptune-sized exoplanet. Kepler-150 f (P = 637.2 days, RP = 3.86 R⊕) is confirmed using a combination of false positive probability analysis, transit duration analysis, and the planet multiplicity argument.

Entities:  

Keywords:  planetary systems; planets and satellites: detection

Year:  2017        PMID: 29375142      PMCID: PMC5783551          DOI: 10.3847/1538-3881/aa62ad

Source DB:  PubMed          Journal:  Astron J        ISSN: 0004-6256            Impact factor:   6.263


  1 in total

1.  Kepler planet-detection mission: introduction and first results.

Authors:  William J Borucki; David Koch; Gibor Basri; Natalie Batalha; Timothy Brown; Douglas Caldwell; John Caldwell; Jørgen Christensen-Dalsgaard; William D Cochran; Edna DeVore; Edward W Dunham; Andrea K Dupree; Thomas N Gautier; John C Geary; Ronald Gilliland; Alan Gould; Steve B Howell; Jon M Jenkins; Yoji Kondo; David W Latham; Geoffrey W Marcy; Søren Meibom; Hans Kjeldsen; Jack J Lissauer; David G Monet; David Morrison; Dimitar Sasselov; Jill Tarter; Alan Boss; Don Brownlee; Toby Owen; Derek Buzasi; David Charbonneau; Laurance Doyle; Jonathan Fortney; Eric B Ford; Matthew J Holman; Sara Seager; Jason H Steffen; William F Welsh; Jason Rowe; Howard Anderson; Lars Buchhave; David Ciardi; Lucianne Walkowicz; William Sherry; Elliott Horch; Howard Isaacson; Mark E Everett; Debra Fischer; Guillermo Torres; John Asher Johnson; Michael Endl; Phillip MacQueen; Stephen T Bryson; Jessie Dotson; Michael Haas; Jeffrey Kolodziejczak; Jeffrey Van Cleve; Hema Chandrasekaran; Joseph D Twicken; Elisa V Quintana; Bruce D Clarke; Christopher Allen; Jie Li; Haley Wu; Peter Tenenbaum; Ekaterina Verner; Frederick Bruhweiler; Jason Barnes; Andrej Prsa
Journal:  Science       Date:  2010-01-07       Impact factor: 47.728

  1 in total
  1 in total

1.  An exomoon survey of 70 cool giant exoplanets and the new candidate Kepler-1708 b-i.

Authors:  David Kipping; Steve Bryson; Chris Burke; Jessie Christiansen; Kevin Hardegree-Ullman; Billy Quarles; Brad Hansen; Judit Szulágyi; Alex Teachey
Journal:  Nat Astron       Date:  2022-01-13       Impact factor: 14.437

  1 in total

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