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Cygnus X-1

File:Cygnus_IAU.svg · Wikimedia Commons · See Wikimedia Commons

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Cygnus X-1

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Galactic X-ray source in the constellation Cygnus that is very likely a black hole

Key facts

Constellation
Cygnus
Right ascension
19 58 21.67574
Declination
+35 ° 12 ′ 05.7845 ″
Apparent magnitude v
8.72 - 8.93
Spectral type
O9.7Iab
U b color index
−0.30
B v color index
+0.81
Variable type
Ellipsoidal variable

via Wikipedia infobox

Wikidata facts

Instance of
variable star
Constellation
Cygnus
Distance from Earth
2252.76
Radius
21.0
Mass
14.8
Image
Chandra image of Cygnus X-1.jpg
Show 17 more facts
catalog code
UBV M 27507
Commons category
Cygnus X-1
spectral class
B
apparent magnitude
8.536617
parallax
0.4439
stellar rotational velocity
112
radial velocity
-12.0
different from
Cygnus X-3
age estimated by a dating method
5000000
effective temperature
31000
luminosity
105
absolute magnitude
-6.5
right ascension component of proper motion
-3.812
declination component of proper motion
-6.31
on focus list of Wikimedia project
Wikipedia:Vital articles/Level/4
right ascension
299.59031556498
declination
35.20160680908
Sources (9)

via Wikidata · CC0

~24 min read

Encyclopedic overview

Cygnus X-1 (abbreviated Cyg X-1) is a galactic X-ray source in the constellation Cygnus and was the first such source widely accepted to be a black hole. It was discovered in 1964 during a rocket flight and is one of the strongest X-ray sources detectable from Earth, producing a peak X-ray flux density of 2.3×10 W/(m⋅Hz) (2.3×10 jansky). It remains among the most studied astronomical objects in its class. The compact object is now estimated to have a mass about 21.2 times the mass of the Sun and has been shown to be too small to be any known kind of normal star or other likely object besides a black hole. If so, the radius of its event horizon has 300 km "as upper bound to the linear dimension of the source region" of occasional X-ray bursts lasting only for about 1 ms.

Cygnus X-1 is a high-mass X-ray binary system located about 7,000 light-years away, that includes a blue supergiant variable star. The supergiant and black hole are separated by about 0.2 AU, or 20% of the distance from Earth to the Sun. A stellar wind from the star provides material for an accretion disk around the X-ray source. Matter in the inner disk is heated to millions of degrees, generating the observed X-rays. A pair of relativistic jets, arranged perpendicularly to the disk, are carrying part of the energy of the infalling material away into interstellar space.

Excerpted from Wikipedia’s “Cygnus X-1” article, available under the CC BY-SA 4.0 licence.

Gallery (8)