GJ 1061

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GJ 1061
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Observation data
Epoch J2000      Equinox J2000
Constellation Horologium
Right ascension Template:RA[1]
Declination Template:DEC[1]
Apparent magnitude (V) 13.03[2]
Characteristics
Spectral type M5.5 V[2]
Apparent magnitude (J) Script error: No such module "val".[3]
U−B Template:Engvar 1.52[4]
B−V Template:Engvar 1.90[4]
Astrometry
Radial velocity (Rv)Script error: No such module "val".[1] km/s
Proper motion (μ) RA: Script error: No such module "val". mas/yr[1]
Dec.: Script error: No such module "val". mas/yr[1]
Parallax (π)272.1615±0.0316 mas[1]
DistanceTemplate:Rnd ± Template:Rnd ly
(Template:Rnd ± Template:Rnd pc)
Absolute magnitude (MV)15.26[5]
Details
MassScript error: No such module "val".[6] Template:Solar mass
RadiusScript error: No such module "val".[6] Template:Solar radius
Luminosity (bolometric)0.001641±0.000037[6] Template:Solar luminosity
Luminosity (visual, LV)0.00007Template:Efn Template:Solar luminosity
TemperatureScript error: No such module "val".[6] K
Metallicity [Fe/H]Script error: No such module "val".[6] dex
RotationScript error: No such module "val".[3]
Rotational velocity (v sin i)<2.5[3] km/s
AgeScript error: No such module "val".[7] Gyr
Metallicity [Fe/H]{{{metal_fe2}}} dex
Other designations
Template:Odlist[4]
Database references
SIMBADdata
Exoplanet Archivedata

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GJ 1061 is a red dwarf star located Script error: No such module "convert". from Earth in the southern constellation of Horologium. Even though it is a relatively nearby star, it has an apparent visual magnitude of about 13,[2] so it can only be seen with at least a moderately-sized telescope.

This star is a tiny, dim, red dwarf, close to the lower mass limit. It has an estimated mass of about 12.5% that of the Sun and is only about 0.2% as luminous.[6] It is an old, slowly-rotating star, with an age of at least 7 billion years and a rotation period of about 125 days.[3] The star displays no significant infrared excess due to circumstellar dust.[8] It hosts a system of three known exoplanets.[3]

History of observations

The proper motion of GJ 1061 has been known since 1974, but it was estimated to be further away: approximately Script error: No such module "convert". distant based upon an estimated parallax of 0.130. The RECONS accurately determined its distance in 1997. At that time, it was the 20th-nearest known star system to the Sun. The discovery team noted that many more stars like this are likely to be discovered nearby.[2]

Planetary system

On August 13, 2019, a system of three planets was announced orbiting the star GJ 1061 by the Red Dots project for detecting terrestrial planets around nearby red dwarf stars.[7] Since the planets were detected by the radial velocity method, initially only their minimum masses were known. Further observations allowed the true masses to be determined based on gravitational interactions between the planets.Template:Efn All three planets are less than twice the mass of Earth, and so are likely to be rocky planets.[3]

The planet GJ 1061 d orbits in the conservative habitable zone of its star, and the planet GJ 1061 c orbits near the inner edge of the habitable zone.[7] since 2025Template:Dated maintenance category (articles)Script error: No such module "Check for unknown parameters"., they are the third- and fourth-nearest known terrestrial exoplanets in the habitable zone, after Proxima Centauri b and Ross 128 b.[3] GJ 1061 is a non-variable star that does not suffer flares, so there is a greater probability that the exoplanets still conserve their atmospheres if they had them.[9]

Template:OrbitboxPlanet begin Template:OrbitboxPlanet Template:OrbitboxPlanet Template:OrbitboxPlanet

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GJ 1061 c

GJ 1061 c is a potentially habitable exoplanet orbiting within the limits of the optimistically defined habitable zone of its red dwarf parent star.[10][11][7]

GJ 1061 c is about 81% more massive than the Earth.[3] The planet receives 35% more stellar flux than Earth and has an equilibrium temperature of Script error: No such module "convert"..[12] Should the atmosphere be of a similar composition to Earth's, the average temperature of the surface would be warmer, at around Script error: No such module "convert"..

GJ 1061 c orbits its parent star very closely, every 6.7 days at a distance of just 0.035 au, so it is probably tidally locked and in synchronous rotation with its star.

GJ 1061 d

GJ 1061 d is a potentially habitable exoplanet largely orbiting within the limits of the conservatively defined habitable zone of its parent red dwarf star.[10][13][7]

The exoplanet is about 67% more massive than the Earth.[3] The planet receives about 40% less stellar flux than Earth and has an estimated equilibrium temperature of Script error: No such module "convert"..[10][7] The average temperature on the surface would be colder than Earth's and at around Script error: No such module "convert"., provided the atmosphere is similar to that of Earth.

GJ 1061 d orbits its star every 13 days, and due to its close-in semi-major axis, it is likely that the exoplanet is tidally locked.[14] However, if the planet's orbit is confirmed to be highly eccentric then this eccentricity could be desynchronising it, enabling the existence of non-synchronised states of equilibrium in its rotation, relative to which side of the planet is facing the star, and thereby it will experience a day/night cycle.[15]

Another solution for this planet gives it a slightly shorter period of 12.4 days and a slightly smaller minimum mass of Template:Earth mass.[7]

See also

Notes

Template:Notelist

References

  1. a b c d e Template:Cite Gaia DR3
  2. a b c d Script error: No such module "Citation/CS1".
  3. a b c d e f g h i Script error: No such module "Citation/CS1".
  4. a b c Template:Cite simbad
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  6. a b c d e f Script error: No such module "Citation/CS1".
  7. a b c d e f g Script error: No such module "Citation/CS1".
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  10. a b c Script error: No such module "citation/CS1".
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External links

Template:Nearest systems Template:Stars of Horologium Template:Portal bar Template:Authority control