HD 190228
HD 190228 is a star with a substellar companion in the constellation Vulpecula. Its apparent magnitude is 7.30 – too faint to be seen with the naked eye – and the absolute magnitude is 3.34. Based on parallax measurements, it is located at a distance of 205 light-years (63 parsecs) from the Sun. The star is older than the Sun with an age over 5 billion years and it is metal-poor.[4]
Observation data Epoch J2000.0 Equinox J2000.0 | |
---|---|
Constellation | Vulpecula |
Right ascension | 20h 03m 00.77266s[1] |
Declination | +28° 18′ 24.6871″[1] |
Apparent magnitude (V) | 7.30[2] |
Characteristics | |
Spectral type | G5IV[3] |
B−V color index | 0.793±0.006[2] |
Astrometry | |
Radial velocity (Rv) | −50.26±0.12[1] km/s |
Proper motion (μ) | RA: 104.273 mas/yr[1] Dec.: −69.961 mas/yr[1] |
Parallax (π) | 15.8973 ± 0.0159 mas[1] |
Distance | 205.2 ± 0.2 ly (62.90 ± 0.06 pc) |
Absolute magnitude (MV) | 3.36[2] |
Details | |
Mass | 0.83 M☉[4] 1.19[5] M☉ |
Surface gravity (log g) | 4.02±10[4] cgs |
Temperature | 5,360±40[4] K |
Metallicity [Fe/H] | –0.24±0.06[4] dex |
Rotational velocity (v sin i) | 4.4[5] km/s |
Age | 5.1[5] Gyr |
Other designations | |
Database references | |
SIMBAD | data |
ARICNS | data |
Extrasolar Planets Encyclopaedia | data |
Planetary system
In 2000, it was announced that a giant planet was orbiting the star with a minimum mass of 5 Jupiter masses, designated HD 190228 b.[7][4] The planetary nature of the object was questioned because of the low metal content of the star: giant planets are more likely to be found around high-metallicity stars, so it was argued that the object was more likely to be a brown dwarf.[8] A 2011 study using astrometric measurements from Hipparcos found that, with 95% confidence, HD 190228 b is in fact a brown dwarf of 49.4±14.8 Jupiter masses in a nearly face-on orbit.[9]
However, later studies in 2022 and 2023 using both Hipparcos and Gaia astrometry found much lower true masses, close to the minimum mass. While the former study notes that their inclination measurement is poorly constrained, and that further study should better constrain the mass, the latter says that the low-mass solution is preferred given the relatively large uncertainty in the Hipparcos data.[10][11] Thus, as of 2023 it seems likely that HD 190228 b is a planet. It takes 3.1 years to orbit the star, and its orbit is elliptical with an eccentricity of 0.55.
Companion (in order from star) |
Mass | Semimajor axis (AU) |
Orbital period (years) |
Eccentricity | Inclination | Radius |
---|---|---|---|---|---|---|
b | 6.1+1.2 −1.0 MJ |
2.293±0.031 | 3.1391+0.0053 −0.005 |
0.547+0.01 −0.011 |
48+16 −10 or 132+10 −16° |
— |
References
- Vallenari, A.; et al. (Gaia collaboration) (2023). "Gaia Data Release 3. Summary of the content and survey properties". Astronomy and Astrophysics. 674: A1. arXiv:2208.00211. Bibcode:2023A&A...674A...1G. doi:10.1051/0004-6361/202243940. S2CID 244398875. Gaia DR3 record for this source at VizieR.
- Anderson, E.; Francis, Ch. (2012). "XHIP: An extended hipparcos compilation". Astronomy Letters. 38 (5): 331. arXiv:1108.4971. Bibcode:2012AstL...38..331A. doi:10.1134/S1063773712050015. S2CID 119257644.
- White, Russel J.; et al. (June 2007). "High-Dispersion Optical Spectra of Nearby Stars Younger Than the Sun". The Astronomical Journal. 133 (6): 2524–2536. arXiv:0706.0542. Bibcode:2007AJ....133.2524W. doi:10.1086/514336. S2CID 122854.
- Perrier, C.; et al. (2003). "The ELODIE survey for northern extra-solar planets. I. Six new extra-solar planet candidates". Astronomy and Astrophysics. 410 (3): 1039–1049. arXiv:astro-ph/0308281. Bibcode:2003A&A...410.1039P. doi:10.1051/0004-6361:20031340. S2CID 6946291.
- Luck, R. Earle (January 2017). "Abundances in the Local Region II: F, G, and K Dwarfs and Subgiants". The Astronomical Journal. 153 (1): 19. arXiv:1611.02897. Bibcode:2017AJ....153...21L. doi:10.3847/1538-3881/153/1/21. S2CID 119511744. 21.
- "HD 190228". SIMBAD. Centre de données astronomiques de Strasbourg. Retrieved 2022-01-25.
- "European Southern Observatory: Six Extrasolar Planets Discovered". SpaceRef Interactive Inc. 7 August 2000. Retrieved 15 August 2009.
- Chen, Y. Q.; Zhao, G. (2001). "The companion of HD 190228: Planet or brown dwarf?". Astronomy and Astrophysics. 374 (1): L1–L4. Bibcode:2001A&A...374L...1C. doi:10.1051/0004-6361:20010790.
- Sahlmann, J.; et al. (2011). "The companion of HD 190228: Planet or brown dwarf?". Astronomy and Astrophysics. 525. A95. arXiv:1009.5991. Bibcode:2011A&A...525A..95S. doi:10.1051/0004-6361/201015427. S2CID 119276951.
- Feng, Fabo; Butler, R. Paul; et al. (August 2022). "3D Selection of 167 Substellar Companions to Nearby Stars". The Astrophysical Journal Supplement Series. 262 (21): 21. arXiv:2208.12720. Bibcode:2022ApJS..262...21F. doi:10.3847/1538-4365/ac7e57. S2CID 251864022.
- Xiao, Guang-Yao; Liu, Yu-Juan; et al. (May 2023). "The Masses of a Sample of Radial-Velocity Exoplanets with Astrometric Measurements". Research in Astronomy and Astrophysics. 23 (5): 055022. arXiv:2303.12409. Bibcode:2023RAA....23e5022X. doi:10.1088/1674-4527/accb7e.