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Related papers: Magnetic properties of Proxima Centauri b analogue…

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Proxima Centauri is an M dwarf approximately 15,000 AU from the Alpha Centauri binary, comoving and likely in a loosely bound orbit. Dynamic simulations show this configuration can form from a more tightly bound triple system. As our…

Earth and Planetary Astrophysics · Physics 2016-11-15 R. Worth , S. Sigurdsson

The habitability of exoplanets hosted by M-dwarf stars dramatically depends on their space weather. We present 3D magneto-hydrodynamic simulations to characterise the magneto-plasma environment and thus the habitability of the Earth-like…

Earth and Planetary Astrophysics · Physics 2024-08-14 Luis Peña-Moñino , Miguel Pérez-Torres , Jacobo Varela , Philippe Zarka

We present a study of four different formation scenarios that may be able to explain the origin of the recently announced planet (`Proxima b') orbiting Proxima Centauri. The aim is to examine how the formation scenarios differ in their…

The wide binary orbit of Proxima Centauri around $\alpha$ Centauri A and B differs significantly between Newtonian and Milgromian dynamics (MOND). By combining previous calculations of this effect with mock observations generated using a…

Solar and Stellar Astrophysics · Physics 2019-06-21 Indranil Banik , Pavel Kroupa

The recent discovery of an Earth-like exoplanet around Proxima Centauri has shined a spot light on slowly rotating fully convective M-stars. When such stars rotate rapidly (period $\lesssim 20$ days), they are known to generate very high…

Solar and Stellar Astrophysics · Physics 2016-12-28 Rakesh K. Yadav , Ulrich R. Christensen , Scott J. Wolk , Katja Poppenhaeger

Proxima Centauri b provides an unprecedented opportunity to understand the evolution and nature of terrestrial planets orbiting M dwarfs. Although Proxima Cen b orbits within its star's habitable zone, multiple plausible evolutionary paths…

We address the important question of whether the newly discovered exoplanet, Proxima Centauri b (PCb), is capable of retaining an atmosphere over long periods of time. This is done by adapting a sophisticated multi-species MHD model…

Earth and Planetary Astrophysics · Physics 2017-03-16 Chuanfei Dong , Manasvi Lingam , Yingjuan Ma , Ofer Cohen

Radial velocity monitoring has found the signature of a $M \sin i = 1.3$~M$_\oplus$ planet located within the Habitable Zone (HZ) of Proxima Centauri \citep{Anglada16}. Despite a hotter past and an active host star the planet Proxima~b…

Our nearest stellar neighbour, Proxima Centauri, is a low mass star with spectral typedM5.5 and hosting an Earth-like planet orbiting within its habitable zone. However, the habitability of the planet depends on the high-energy radiation of…

Solar and Stellar Astrophysics · Physics 2020-09-02 S. Lalitha , J. H. M. M. Schmitt , K. P. Singh , P. C. Schneider , R. O. Parke Loyd , K. France , P. Predehl , V. Burwitz , J. Robrade

Recent studies regarding the habitability, observability, and possible orbital evolution of the indirectly detected exoplanet Proxima b have mostly assumed a planet with $M \sim 1.3$ $M_\oplus$, a rocky composition, and an Earth-like…

Earth and Planetary Astrophysics · Physics 2017-03-08 Alex Bixel , Dániel Apai

Proxima c, a candidate second planet orbiting Proxima Centauri, was detected with the radial velocity method. The announced long orbital period (5.21$^{+0.26}_{-0.22}$ years), and small semi-amplitude of the induced Doppler signal…

Earth and Planetary Astrophysics · Physics 2020-04-01 Mario Damasso , Fabio Del Sordo

The discovery of Proxima b, a terrestrial temperate planet, presents the opportunity of studying a potentially habitable world in optimal conditions. A key aspect to model its habitability is to understand the radiation environment of the…

Solar and Stellar Astrophysics · Physics 2017-07-12 Ignasi Ribas , Michael D. Gregg , Tabetha S. Boyajian , Emeline Bolmont

We examine the feasibility of detecting auroral emission from the potentially habitable exoplanet Proxima Centauri b. Detection of aurorae would yield an independent confirmation of the planet's existence, constrain the presence and…

Earth and Planetary Astrophysics · Physics 2017-03-08 Rodrigo Luger , Jacob Lustig-Yaeger , David P. Fleming , Matt A. Tilley , Eric Agol , Victoria S. Meadows , Russell Deitrick , Rory Barnes

Stars of stellar type later than about M3.5 are believed to be fully convective and therefore unable to support magnetic dynamos like the one that produces the 11-year solar cycle. Because of their intrinsic faintness, very few late M stars…

Solar and Stellar Astrophysics · Physics 2016-10-12 B. J. Wargelin , S. H. Saar , G. Pojmański , J. J. Drake , V. L. Kashyap

At a distance of 1.295 parsecs, the red-dwarf Proxima Centauri ($\alpha$ Centauri C, GL 551, HIP 70890, or simply Proxima) is the Sun's closest stellar neighbor and one of the best studied low-mass stars. It has an effective temperature of…

Proxima Centauri is known to host an earth-like planet in its habitable zone; very recently a second candidate planet was proposed based on radial velocities. At quadrature, the expected projected separation of this new candidate is larger…

The two innermost planets of the Proxima Centauri system are separated by just 0.02 au, inducing strong gravitational interactions between them. We assess this interaction by leveraging fast orbital stability indicators and find that…

Earth and Planetary Astrophysics · Physics 2024-01-18 Joseph R. Livesey , Rory Barnes , Russell Deitrick

The analysis of Proxima Centauri's radial velocities recently led Anglada-Escud\'e et al. (2016) to claim the presence of a low mass planet orbiting the Sun's nearest star once every 11.2 days. Although the a-priori probability that Proxima…

Proxima Centauri, the star closest to our Sun, is known to host at least one terrestrial planet candidate in a temperate orbit. Here we report the ALMA detection of the star at 1.3 mm wavelength and the discovery of a belt of dust orbiting…

The detection and characterisation of Earth-like planets with Doppler signals of the order of 1 m/s currently represent one of the greatest challenge for extrasolar-planet hunters. As results for such findings are often controversial, it is…

Earth and Planetary Astrophysics · Physics 2017-03-15 M. Damasso , F. Del Sordo