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CoRoT-3 b
EntityQ965930· pop 16· linked from 182 articles

Also known as COROT-Exo-3b

Key facts

Planet.discoverer
Deleuil et al. (CoRoT)
Planet.discovered
February 3, 2008
Planet.discovery_method
Transit method
Planet.apsis
astron

via Wikipedia infobox

Wikidata facts

Instance of
star
Constellation
Aquila
Parent body
COROT-3
Radius
1.19
Mass
21.23
Orbital period
4.2567994
Image
Exoplanet Comparison CoRoT-3 b.png
Show 13 more facts
catalog code
TIC 392353449b
discovery method
transit method
time of discovery or invention
2008-12-00
Commons category
CoRoT-3 b
right ascension
292.05526770115955
declination
0.12183730618000
parallax
1.2747
epoch
J2000.0
orbital eccentricity
0.008
semi-major axis of an orbit
0.057
orbital inclination
86.1
right ascension component of proper motion
3.493
declination component of proper motion
-0.326
Sources (2)

via Wikidata · CC0

~4 min read

Encyclopedic overview

4 sections
Contents
  • Physical properties
  • Classification
  • References
  • External links

CoRoT-3b (formerly known as CoRoT-Exo-3b) is a brown dwarf or massive extrasolar planet with a mass 21.66 times that of Jupiter. The object orbits the F-type star CoRoT-3 in the constellation of Aquila. The orbit is circular and takes 4.2568 days to complete. It was discovered by the French-led CoRoT mission which detected the dimming of the parent star's light as CoRoT-3b passes in front of it (a situation called a transit).

==Physical properties== The mass of CoRoT-3b was determined by the radial velocity method, which involves detecting the Doppler shift of the parent star's spectrum as it moves towards and away from Earth as a result of the orbiting companion. This method usually gives only a lower limit on the object's true mass: the measured quantity is the true mass multiplied by the sine of the inclination angle between the normal vector to the orbital plane of the companion and the line of sight between Earth and the star, an angle which in general is unknown. However, in the case of CoRoT-3b, the transits reveal the inclination angle and thus the true mass can be determined. In the case of CoRoT-3b, the mass is 21.66 times the mass of the planet Jupiter.

Excerpted from Wikipedia’s “CoRoT-3 b” article, available under the CC BY-SA 4.0 licence.