Gliese 504 b

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Gliese 504 b
Exoplanet List of exoplanets
300px
Labeled NASA composite image, combining Subaru images of GJ 504 using two near-infrared wavelengths (orange, 1.6 micrometers, taken in May 2011; blue, 1.2 micrometers, April 2012). Once processed to remove scattered starlight, the images reveal the orbiting planet, GJ 504b.
300px
NASA artist's impression of Gliese 504 b.
Parent star
Star 59 Virginis (GJ 504)
Constellation Virgo
Right ascension (α) 13h 16m 47.0s
Declination (δ) +09° 25′ 27″
Apparent magnitude (mV) 5.22
Distance 57.27 ± 0.26 ly
(17.56 ± 0.08 pc)
Spectral type G0V
Mass (m) 1.22 ± 0.08 M
Temperature (T) 6234 ± 25 K
Age 0.160+.35
−.06
 Gyr
Observed separation
Observation epoch 2012 Apr 12
Angular separation (ρ) 2487 ± 8 mas
Position angle (θ) 326.54 ± 0.18°
Projected separation (d) 43.5 AU
Physical characteristics
Mass (m) 4.0+4.5
−1
MJ
Surface gravity (g) 3.9 ± 0.2 g
Temperature (T) 510 ± 20
Discovery information
Discovery date 2013
Discoverer(s) Kuzuhara et al.
Discovery method Direct imaging
Discovery site Subaru Telescope
Discovery status Confirmed
Other designations
59 Vir b
Database references
Extrasolar Planets
Encyclopaedia
data
SIMBAD data
Exoplanet Archive data
Open Exoplanet Catalogue data

Gliese 504 b (often shortened to GJ 504 b) is a Jovian planet in the system of the young solar analog 59 Virginis (GJ 504),[note 1] discovered by direct imaging using HiCiao instrument and AO188 adaptive optics system on the 8.2-meter Subaru Telescope of Mauna Kea Observatory, Hawaii by Kuzuhara et al.[1] Visually, GJ 504 b would have a magenta color.

History of observation

The discovery images were taken in 2011 and common proper motion was confirmed in 2012 as part of the Strategic Exploration of Exoplanets and Disks with Subaru (SEEDS) survey. The SEEDS survey aims to detect and characterize giant planets and circumstellar disks using the 8.2-meter Subaru Telescope. In February 2013 Kuzuhara et al. submitted the discovery paper to The Astrophysical Journal, and in August it was published.[1] A follow-up study published in the October 2013 edition of the Astrophysical Journal confirmed methane absorption in the infrared H band, the first time this has been done for a directly imaged planet that formed within a disk.[2]

Properties

GJ 504 b's spectral type was originally projected to be late T or early Y, but a follow-up study estimated that a T8 spectral type was the best fit. Its effective temperature is 510+30
−20
K, much cooler than previously imaged exoplanets with a clear planetary origin. Its mass is 4.0+4.5
−1.0
MJup. With an age of 100–500 million years, it is also one of the oldest extrasolar planets directly imaged. The angular separation of the planet from its parent star is about 2.5 arcseconds, corresponding to a projected separation of 43.5 AU,[1] which is nearly nine times the distance between Jupiter and the Sun, which poses a challenge to theoretical ideas of how giant planets form.[3] This planet is seen as an excellent target for detailed spectroscopic characterization due to its proximity to Earth and its wide separation.

Notes

  1. In spite of names of some exoplanets, derived from theirs host stars Flamsteed designations (for example, 51 Pegasi b, 61 Virginis b, 70 Virginis b etc.), the discoverers of this exoplanet did not use a similar name (i.e. "59 Virginis b") to refer to it, but used the designation "GJ 504 b" instead, derived from the Gliese–Jahreiß identifier of its parent star "GJ 504".

References

  1. 1.0 1.1 1.2 Lua error in package.lua at line 80: module 'strict' not found.
  2. http://iopscience.iop.org/2041-8205/778/1/L4/article
  3. http://www.nasa.gov/content/goddard/astronomers-image-lowest-mass-exoplanet-around-a-sun-like-star/index.html Astronomers Image Lowest-mass Exoplanet Around a Sun-like Star

External links

Coordinates: Sky map 13h 16m 46.51596s, +09° 25′ 26.9590″