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A second terrestrial planet orbiting the nearby M dwarf LHS 1140

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arxiv 1808.00485 v2 pith:VBLAJOYN submitted 2018-08-01 astro-ph.EP

Kristo Ment (1) , Jason A. Dittmann (2) , Nicola Astudillo-Defru (3) , David Charbonneau (1) , Jonathan Irwin (1) , Xavier Bonfils (4) , Felipe Murgas (5) , Jose-Manuel Almenara (4)
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Thierry Forveille (4) Eric Agol (6) Sarah Ballard (7) Zachory K. Berta-Thompson (8) François Bouchy (9) Ryan Cloutier (10 11 12) Xavier Delfosse (4) René Doyon (12) Courtney D. Dressing (13) Gilbert A. Esquerdo (1) Raphaëlle D. Haywood (1) David M. Kipping (14) David W. Latham (1) Christophe Lovis (9) Elisabeth R. Newton (7) Francesco Pepe (9) Joseph E. Rodriguez (1) Nuno C. Santos (15 16) Thiam-Guan Tan (17) Stephane Udry (9) Jennifer G. Winters (1) Anaël Wünsche (4) ((1) Harvard-Smithsonian Center for Astrophysics Cambridge MA USA (2) 51 Pegasi b Postdoctoral Fellow Massachusetts Institute of Technology (3) Departamento de Astronomía Universidad de Concepción Concepción Chile (4) Université Grenoble Alpes CNRS IPAG Grenoble France (5) Instituto de Astrofísica de Canarias (IAC) Tenerife Spain (6) Astronomy Department University of Washington Seattle WA (7) Massachusetts Institute of Technology (8) Department of Astrophysical Planetary Sciences University of Colorado Boulder CO (9) Observatoire de l'Université de Genève Versoix Switzerland (10) Dept. of Astronomy & Astrophysics University of Toronto Toronto ON Canada (11) Centre for Planetary Sciences Dept. of Physical & Environmental Sciences University of Toronto Scarborough (12) Institut de Recherche sur les Exoplanètes Département de Physique Université de Montréal Montréal QC (13) Department of Astronomy University of California Berkeley CA (14) Department of Astronomy Columbia University New York NY (15) Instituto de Astrofísica e Ciências do Espaço Universidade do Porto CAUP Porto Portugal (16) Departamento de Física e Astronomia Faculdade de Ciências (17) Perth Exoplanet Survey Telescope Perth Australia)
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classification astro-ph.EP
keywords earthplanetsnearbybecauseconsistentdwarfknownmass
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

LHS 1140 is a nearby mid-M dwarf known to host a temperate rocky super-Earth (LHS 1140 b) on a 24.737-day orbit. Based on photometric observations by MEarth and Spitzer as well as Doppler spectroscopy from HARPS, we report the discovery of an additional transiting rocky companion (LHS 1140 c) with a mass of $1.81\pm0.39~{\rm M_{Earth}}$ and a radius of $1.282\pm0.024~{\rm R_{Earth}}$ on a tighter, 3.77795-day orbit. We also obtain more precise estimates of the mass and radius of LHS 1140 b to be $6.98\pm0.89~{\rm M_{Earth}}$ and $1.727\pm0.032~{\rm R_{Earth}}$. The mean densities of planets b and c are $7.5\pm1.0~\rm{g/cm^3}$ and $4.7\pm1.1~\rm{g/cm^3}$, respectively, both consistent with the Earth's ratio of iron to magnesium silicate. The orbital eccentricities of LHS 1140 b and c are consistent with circular orbits and constrained to be below 0.06 and 0.31, respectively, with 90% confidence. Because the orbits of the two planets are co-planar and because we know from previous analyses of Kepler data that compact systems of small planets orbiting M dwarfs are commonplace, a search for more transiting planets in the LHS 1140 system could be fruitful. LHS 1140 c is one of the few known nearby terrestrial planets whose atmosphere could be studied with the upcoming James Webb Space Telescope.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 100 citations worldwide. Full citation record

  1. Detailed Architecture of the L 98-59 System and Confirmation of a Fifth Planet in the Habitable Zone

    astro-ph.EP 2025-07 conditional novelty 6.0 of 10

    The paper confirms a non-transiting habitable-zone super-Earth (L 98-59 f) and refines masses, radii, and near-circular eccentricities for all five planets in the L 98-59 system.

  2. ASTEP confirmation of a pair of long-period Jupiter-sized planets with extremely low densities transiting TOI-791

    astro-ph.EP 2026-06 unverdicted novelty 5.0 of 10

    Two extremely low-density Jupiter-sized planets on long-period orbits around TOI-791 were confirmed via ground-based photometry and TTV-derived masses.

  3. The high-energy radiation environment of the habitable-zone super-Earth LHS 1140b

    astro-ph.EP 2019-06 unverdicted novelty 4.0 of 10

    Swift observations find LHS 1140b receives <2% of Earth's NUV flux but a FUV/NUV ratio 100-200 times higher, with the host star showing low variability.

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