Mizar

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This is an article about the star, for other uses please see Mizar (disambiguation)
Mizar
Observation data
Epoch J2000
Constellation Ursa Major
Right ascension 13h 23m 55.5s
Declination +54° 55′ 31″
Apparent magnitude (V) 2.23
Spectral Characteristics
Spectral type A2 V/A2 V/A1 V
U-B color index 0.09
B-V color index 0.13
Variable type  ?
Astrometry
Radial velocity (Rv) -9 km/s
Proper motion (μ) RA: 121.23 mas/yr
Dec.: -22.01 mas/yr
Parallax (π) 41.73 ± 0.61 mas
Distance 78 ± 1 ly
(24 ± 0.4 pc)
Absolute magnitude (MV) 0.33
Other designations
Mizat, Mirza, Mitsar, 79 Ursae Majoris, HR 5054, BD +55 1598A, HD 116656, GCTP 3062.00, SAO 28737, FK5 497, GC 18133, ADS 8891, CCDM J13240+5456, HIP 65378.

Mizar (ζ UMa) is a star in the constellation Ursa Major and is the second star from the end of the Big Dipper's handle. The name comes from the Arabic ميزر mīzar, meaning a waistband or girdle. Mizar has apparent magnitude 2.40 and spectral class A1 V.

With good eyesight one can make out a faint companion just to the east, called Alcor or 80 Ursae Majoris. Alcor has magnitude 3.99 and spectral class A5 V. The two are often called the horse and rider, and the ability to see the second is a traditional test of eyesight. The two stars lie more than a quarter of a light year apart and although proper motions show they move together, it is still not known whether they form a true binary star system, and not an optical binary as currently thought.

More components were discovered with the advents of the telescope and spectroscopy. Mizar was the first telescopic binary discovered, most probably by Benedetto Castelli who in 1617 asked Galileo Galilei to observe it. Galileo then produced a detailed record of the double star. Later, around 1650, Riccioli wrote of Mizar appearing as a double. The secondary star, Mizar B, has magnitude 4.0 and spectral class A7, and comes within 380 AU of the primary; the two take thousands of years to revolve around each other. Mizar A then became the first spectroscopic binary to be discovered, by Pickering in 1889. The two components are both about 35 times as bright as the sun, and revolve around each other in about 20 days. Mizar B (but not Alcor!) was later found to be a spectroscopic binary as well. In 1996 the components of the Mizar A binary system were imaged in extremely high resolution using the Navy Prototype Optical Interferometer.

Alcor
Observation data
Epoch J2000.0
Constellation Ursa Major
Right ascension 13h 25m 13.5s
Declination +54° 59' 17"
Apparent magnitude (V) +3.99
Distance 81.2 ± 1.2 ly
(24.9 ± 0.4 pc)
Spectral type A5V
Other designations
Saidak, 80 Ursae Majoris, HR 5062, HD 116842, BD +55 1603, HIP 65477, SAO 28751, GC 18155, ADS 8891, CCDM J13240+5456

The whole five-star system lies about 78 light-years away from us. The components are all members of the Ursa Major moving group, a mostly dispersed group of stars sharing a common birth, as determined by proper motion. The other stars of the Big Dipper, except Dubhe and Alkaid, belong to this group as well.

[edit] Mizar in fiction

  • In the Star Trek fictional universe, the second planet of the Mizar system is home to a race of green, pacifistic humanoids, the Mizarians.
  • In the second and third books of Michael P. Kube-McDowell's Trigon Disunity series, the Mizar system is home to powerful and xenophobic aliens.
  • The video game The Daedalus Encounter takes place on Mizar.
  • In the video game Jet Force Gemini, Mizar is the name of the main antagonist.
  • In the comic series The Sandman, Mizar appears in the Endless Nights graphic novel as an anthropomorphic star, a female made of blue flame. Mizar serves as the host of an assembly of various cosmic entities, and as the creator of the palace where they meet; she is described as having "power to spare".
  • In the wargaming and roleplaying setting Battletech, Mizar hosts a habitable planet noted for its luxurious resorts and vain inhabitants.
  • In Jack Vance's Demon Princes series, Mizar has at least two inhabited planets and at least six in total.

[edit] External links