Literature DB >> 23215581

Response of atmospheric biomarkers to NO(x)-induced photochemistry generated by stellar cosmic rays for earth-like planets in the habitable zone of M dwarf stars.

John Lee Grenfell1, Jean-Mathias Grießmeier, Philip von Paris, A Beate C Patzer, Helmut Lammer, Barbara Stracke, Stefanie Gebauer, Franz Schreier, Heike Rauer.   

Abstract

Understanding whether M dwarf stars may host habitable planets with Earth-like atmospheres and biospheres is a major goal in exoplanet research. If such planets exist, the question remains as to whether they could be identified via spectral signatures of biomarkers. Such planets may be exposed to extreme intensities of cosmic rays that could perturb their atmospheric photochemistry. Here, we consider stellar activity of M dwarfs ranging from quiet up to strong flaring conditions and investigate one particular effect upon biomarkers, namely, the ability of secondary electrons caused by stellar cosmic rays to break up atmospheric molecular nitrogen (N(2)), which leads to production of nitrogen oxides (NO(x)) in the planetary atmosphere, hence affecting biomarkers such as ozone (O(3)). We apply a stationary model, that is, without a time dependence; hence we are calculating the limiting case where the atmospheric chemistry response time of the biomarkers is assumed to be slow and remains constant compared with rapid forcing by the impinging stellar flares. This point should be further explored in future work with time-dependent models. We estimate the NO(x) production using an air shower approach and evaluate the implications using a climate-chemical model of the planetary atmosphere. O(3) formation proceeds via the reaction O+O(2)+M→O(3)+M. At high NO(x) abundances, the O atoms arise mainly from NO(2) photolysis, whereas on Earth this occurs via the photolysis of molecular oxygen (O(2)). For the flaring case, O(3) is mainly destroyed via direct titration, NO+O(3)NO(2)+O(2), and not via the familiar catalytic cycle photochemistry, which occurs on Earth. For scenarios with low O(3), Rayleigh scattering by the main atmospheric gases (O(2), N(2), and CO(2)) became more important for shielding the planetary surface from UV radiation. A major result of this work is that the biomarker O(3) survived all the stellar-activity scenarios considered except for the strong case, whereas the biomarker nitrous oxide (N(2)O) could survive in the planetary atmosphere under all conditions of stellar activity considered here, which clearly has important implications for missions that aim to detect spectroscopic biomarkers.

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Year:  2012        PMID: 23215581      PMCID: PMC3522229          DOI: 10.1089/ast.2011.0682

Source DB:  PubMed          Journal:  Astrobiology        ISSN: 1557-8070            Impact factor:   4.335


  13 in total

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Authors:  A A Pavlov; J F Kasting
Journal:  Astrobiology       Date:  2002       Impact factor: 4.335

3.  Cosmic ray impact on extrasolar earth-like planets in close-in habitable zones.

Authors:  J-M Griessmeier; A Stadelmann; U Motschmann; N K Belisheva; H Lammer; H K Biernat
Journal:  Astrobiology       Date:  2005-10       Impact factor: 4.335

4.  Biosignatures from Earth-like planets around M dwarfs.

Authors:  Antígona Segura; James F Kasting; Victoria Meadows; Martin Cohen; John Scalo; David Crisp; Rebecca A H Butler; Giovanna Tinetti
Journal:  Astrobiology       Date:  2005-12       Impact factor: 4.335

5.  Coronal mass ejection (CME) activity of low mass M stars as an important factor for the habitability of terrestrial exoplanets. I. CME impact on expected magnetospheres of Earth-like exoplanets in close-in habitable zones.

Authors:  Maxim L Khodachenko; Ignasi Ribas; Helmut Lammer; Jean-Mathias Griessmeier; Martin Leitner; Franck Selsis; Carlos Eiroa; Arnold Hanslmeier; Helfried K Biernat; Charles J Farrugia; Helmut O Rucker
Journal:  Astrobiology       Date:  2007-02       Impact factor: 4.335

6.  Coronal mass ejection (CME) activity of low mass M stars as an important factor for the habitability of terrestrial exoplanets. II. CME-induced ion pick up of Earth-like exoplanets in close-in habitable zones.

Authors:  Helmut Lammer; Herbert I M Lichtenegger; Yuri N Kulikov; Jean-Mathias Griessmeier; N Terada; Nikolai V Erkaev; Helfried K Biernat; Maxim L Khodachenko; Ignasi Ribas; Thomas Penz; Franck Selsis
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7.  The effect of a strong stellar flare on the atmospheric chemistry of an earth-like planet orbiting an M dwarf.

Authors:  Antígona Segura; Lucianne M Walkowicz; Victoria Meadows; James Kasting; Suzanne Hawley
Journal:  Astrobiology       Date:  2010-09-29       Impact factor: 4.335

Review 8.  Astrophysical ionizing radiation and Earth: a brief review and census of intermittent intense sources.

Authors:  Adrian L Melott; Brian C Thomas
Journal:  Astrobiology       Date:  2011-05-05       Impact factor: 4.335

9.  Biomarker response to galactic cosmic ray-induced NOx and the methane greenhouse effect in the atmosphere of an Earth-like planet orbiting an M dwarf star.

Authors:  John Lee Grenfell; Jean-Mathias Griessmeier; Beate Patzer; Heike Rauer; Antigona Segura; Anja Stadelmann; Barbara Stracke; Ruth Titz; Philip Von Paris
Journal:  Astrobiology       Date:  2007-02       Impact factor: 4.335

10.  Ozone concentrations and ultraviolet fluxes on Earth-like planets around other stars.

Authors:  Antígona Segura; Kara Krelove; James F Kasting; Darrell Sommerlatt; Victoria Meadows; David Crisp; Martin Cohen; Eli Mlawer
Journal:  Astrobiology       Date:  2003       Impact factor: 4.335

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2.  Reflections on O2 as a Biosignature in Exoplanetary Atmospheres.

Authors:  Victoria S Meadows
Journal:  Astrobiology       Date:  2017-04-26       Impact factor: 4.335

Review 3.  Exoplanet Biosignatures: A Review of Remotely Detectable Signs of Life.

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4.  The Habitability of Proxima Centauri b: Environmental States and Observational Discriminants.

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5.  The drive to life on wet and icy worlds.

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Review 6.  Exoplanet Biosignatures: Understanding Oxygen as a Biosignature in the Context of Its Environment.

Authors:  Victoria S Meadows; Christopher T Reinhard; Giada N Arney; Mary N Parenteau; Edward W Schwieterman; Shawn D Domagal-Goldman; Andrew P Lincowski; Karl R Stapelfeldt; Heike Rauer; Shiladitya DasSarma; Siddharth Hegde; Norio Narita; Russell Deitrick; Jacob Lustig-Yaeger; Timothy W Lyons; Nicholas Siegler; J Lee Grenfell
Journal:  Astrobiology       Date:  2018-05-10       Impact factor: 4.335

7.  Extreme energetic particle events by superflare-asssociated CMEs from solar-like stars.

Authors:  Junxiang Hu; Vladimir S Airapetian; Gang Li; Gary Zank; Meng Jin
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