HIP 79098

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HIP 79098
Observation data
Epoch J2000.0      Equinox J2000.0
Constellation Scorpius
Right ascension 16h 08m 43.7s[1]
Declination −23° 41′ 07.5″[1]
Apparent magnitude (V) +5.88[1] (5.87 to 5.90)[2]
Characteristics
Spectral type B9V[1]
B9 Mn P Ga[3]
B9 IVn + Ap(Si)s[4]
U−B color index +0.02[1]
B−V color index −0.31[1]
Variable type α2 CVn[2]
Astrometry
Radial velocity (Rv)−16.0[1] km/s
Proper motion (μ) RA: −10.09±0.22[5] mas/yr
Dec.: −26.09±0.18[5] mas/yr
Parallax (π)6.4762 ± 0.1839 mas[5]
Distance500 ± 10 ly
(154 ± 4 pc)
Absolute magnitude (MV)−0.33±0.07[6]
Details
Mass3.46±0.14 M[7]
2.5[6] M
Radius3.2[8] R
Luminosity190 ± 40[7] L
Surface gravity (log g)3.76[8] cgs
Temperature12,430±460[7] K
Metallicity [Fe/H]+0.033[9] dex
Rotational velocity (v sin i)45.0±1.5[7] km/s
Age10±3[6] Myr
Other designations
CD−23 12731, HD 144844, HIP 79098, HR 6003, SAO 184164[1]
Database references
SIMBADdata

HIP 79098 is a binary star in the constellation Scorpius. It has a visual apparent magnitude of +5.88,[1] being visible to the naked eye under very dark skies. From parallax measurements by the Gaia spacecraft, it is located approximately 500 light-years (154 parsecs) from Earth.[5]

This system consists of a chemically peculiar B-type star, plus a spectroscopic companion of unknown type. Two additional distant red dwarfs may be part of the system, at separations of 9,500 and 12,900 AU. In 2019, a brown dwarf was discovered orbiting the central binary at a distance of about 350 AU.[6]

Star system[edit]

This is a young stellar system, belonging to the Upper Scorpius subgroup of the Scorpius–Centaurus association, the nearest OB association to the Sun. This is an association of stars with common origin and movement. The Upper Scorpius subgroup is the youngest of the association and has an estimated age of around 10 million years, which is therefore the age of HIP 79098.[6]

HIP 79098 has a spectral type of B9V,[1] indicating that the primary star is a B-type main sequence star. The system's spectrum is complex and has also been classified as B9 Mn P Ga,[3] and B9IVn+Ap(Si)s.[4] The primary is a chemically peculiar star of the type HgMn (mercury-manganese star),[7] and has strong manganese and gallium lines, and weak helium lines.[3] It is also a variable star, oscillating between magnitudes 5.87 and 5.90 with a period of 2.69 days, being classified as a α2 Canum Venaticorum variable.[2] A secondary period of 0.28 days has also been detected. These variability cycles can be caused by the rotation of the star or by pulsations.[7] The mass of the primary star is estimated at 2.5 times the solar mass.[6]

The system's spectrum has the lines of a second star, which means HIP 79098 is a double-lined spectroscopic binary.[10] While its exact nature is unknown, the secondary star is probably quite massive, possibly almost as massive as the primary. The primary's radial velocity seems to have large variations caused by the orbit of the stars, but different studies give contradictory results regarding the size of these variations, so it is not possible to determine the basic parameters of the system like masses and orbit.[6] The presence of the second star is also seen in the astrometic data by the Hipparcos and Gaia spacecraft, which show a large anomaly from the constant proper motion hypothesis.[11]

There are two other stars close to HIP 79098 in the sky which have proper motion and distances similar to those of HIP 79098, and therefore can be physical companions. They are both low-mass red dwarfs and are also confirmed members of the Scorpius–Centaurus association. The first star has a spectral type of M5 and is separated from HIP 79098 by 65 arcseconds, or 9,500 AU. The second star is brighter and has a spectral type of M3.25, and is separated by 88 arcseconds, or 12,900 AU.[12][6]

Brown dwarf[edit]

The discovery of a brown dwarf orbiting HIP 79098 was published in 2019 as part of the BEAST survey, which searches for planets around B-type stars in the Scorpius–Centaurus association. This object was identified in archival images from 2000 by the ESO 3.6 m Telescope, from 2004 by NACO instrument at the Very Large Telescope, and from 2015 by the SPHERE instrument at the Very Large Telescope. Previous studies had seen the object, but considered it too red to be part of the HIP 79098 system, so it was rejected as a likely background star. The 2019 study combined all the observations of the object and showed that it has a common proper motion with HIP 79098, confirming that it is physically linked to the system.[6]

Named HIP 79098 (AB)b, the brown dwarf is circumbinary and was observed at a separation of 2.4 arcseconds from the central binary, or 345±6 AU. Its color is redder than expected for an object of its luminosity, which is expected given the young age of the system and explains why HIP 79098 (AB)b was not found in the earlier studies. Its color and luminosity are consistent with a spectral type of M9–L0, its mass is 15–26 times the mass of Jupiter, and effective temperature 2,300 to 2,600 K.[6]

The mass ratio between HIP 79098 (AB)b and the central binary is estimated at 0.3–1%. This is a low value similar to some systems with massive planets, which can suggest that HIP 79098 (AB)b represents the upper end of the planet population, as opposed to having been formed as a star.[6]

References[edit]

  1. ^ a b c d e f g h i j "HIP 79098", SIMBAD, Centre de données astronomiques de Strasbourg, retrieved 2022-04-01
  2. ^ a b c "VSX : Detail for NSV 7470", The International Variable Star Index, American Association of Variable Star Observers (AAVSO), retrieved 2022-04-01
  3. ^ a b c Samus, N. N.; Kazarovets, E. V.; Durlevich, O. V.; Kireeva, N. N.; Pastukhova, E. N. (2009), "VizieR Online Data Catalog: General Catalogue of Variable Stars (Samus+, 2007-2017)", Vizier Online Data Catalog, Bibcode:2009yCat....102025S
  4. ^ a b Abt, Helmut A.; Morrell, Nidia I. (1995), "The Relation between Rotational Velocities and Spectral Peculiarities among A-Type Stars", The Astrophysical Journal Supplement Series, 99: 135, Bibcode:1995ApJS...99..135A, doi:10.1086/192182
  5. ^ a b c d Brown, A. G. A.; et al. (Gaia collaboration) (2021). "Gaia Early Data Release 3: Summary of the contents and survey properties". Astronomy & Astrophysics. 649: A1. arXiv:2012.01533. Bibcode:2021A&A...649A...1G. doi:10.1051/0004-6361/202039657. S2CID 227254300. (Erratum: doi:10.1051/0004-6361/202039657e). Gaia EDR3 record for this source at VizieR.
  6. ^ a b c d e f g h i j k Janson, Markus; Asensio-Torres, Ruben; André, Damien; Bonnefoy, Mickaël; Delorme, Philippe; Reffert, Sabine; Desidera, Silvano; Langlois, Maud; Chauvin, Gaël; Gratton, Raffaele; Bohn, Alexander J.; Eriksson, Simon C.; Marleau, Gabriel-Dominique; Mamajek, Eric E.; Vigan, Arthur; Carson, Joseph C. (2019), "The B-Star Exoplanet Abundance Study: A co-moving 16-25 MJup companion to the young binary system HIP 79098", Astronomy and Astrophysics, 626: A99, arXiv:1906.02787, Bibcode:2019A&A...626A..99J, doi:10.1051/0004-6361/201935687, S2CID 174801322
  7. ^ a b c d e f Paunzen, E.; Wraight, K. T.; Fossati, L.; Netopil, M.; White, G. J.; Bewsher, D. (2013), "A photometric study of chemically peculiar stars with the STEREO satellites - II. Non-magnetic chemically peculiar stars", Monthly Notices of the Royal Astronomical Society, 429 (1): 119, arXiv:1211.1535, Bibcode:2013MNRAS.429..119P, doi:10.1093/mnras/sts318
  8. ^ a b Stassun, Keivan G.; et al. (September 2018), "The TESS Input Catalog and Candidate Target List", The Astronomical Journal, 156 (3): 102, arXiv:1706.00495, Bibcode:2018AJ....156..102S, doi:10.3847/1538-3881/aad050, ISSN 0004-6256, S2CID 73582386
  9. ^ Huber, Daniel; Bryson, Stephen T.; Haas, Michael R.; Barclay, Thomas; Barentsen, Geert; Howell, Steve B.; Sharma, Sanjib; Stello, Dennis; Thompson, Susan E. (2016), "The K2 Ecliptic Plane Input Catalog (EPIC) and Stellar Classifications of 138,600 Targets in Campaigns 1-8", The Astrophysical Journal Supplement Series, 224 (1): 2, arXiv:1512.02643, Bibcode:2016ApJS..224....2H, doi:10.3847/0067-0049/224/1/2, S2CID 118621218
  10. ^ Schöller, M.; Correia, S.; Hubrig, S.; Ageorges, N. (2010), "Multiplicity of late-type B stars with HGMN peculiarity", Astronomy and Astrophysics, 522: A85, arXiv:1010.3643, Bibcode:2010A&A...522A..85S, doi:10.1051/0004-6361/201014246, S2CID 119273467
  11. ^ Kervella, Pierre; Arenou, Frédéric; Mignard, François; Thévenin, Frédéric (2019), "Stellar and substellar companions of nearby stars from Gaia DR2. Binarity from proper motion anomaly", Astronomy and Astrophysics, 623: 623, arXiv:1811.08902, Bibcode:2019A&A...623A..72K, doi:10.1051/0004-6361/201834371, S2CID 119491061
  12. ^ Luhman, K. L.; Mamajek, E. E. (2012), "The Disk Population of the Upper Scorpius Association", The Astrophysical Journal, 758 (1): 31, arXiv:1209.5433, Bibcode:2012ApJ...758...31L, doi:10.1088/0004-637X/758/1/31, S2CID 119190361