Red Dwarf
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- This article is about red dwarfs, the type of star. Red Dwarf is also the name of a British television series.
The fact that red dwarfs remain on the main sequence while older stars have moved off the main sequence allows one to date star clusters by finding the mass at which the stars turn off the main sequence. In addition, the fact that no red dwarfs have evolved off the main sequence has been observed as evidence that the universe has a finite age.
One mystery which has not been solved as of 2004 is the lack of red dwarf stars with no metals (in astronomy a metal is any element other than hydrogen and helium). The Big Bang model predicts the first generation of stars should have only hydrogen, helium, and lithium. If such stars included red dwarfs, they should still be observable today, but are not. The conventional explanation is that without heavy elements, low mass stars cannot form. Since a low mass star fuses hydrogen in the presence of metals, then an early protostar of such a low mass devoid of metals would not 'go nuclear', it would simply sit around as a clump of gas until more material came along. This supports the theory that the first stars were extremely high mass population III stars which died quickly and produced the metals necessary for low mass stars to form later.
Red dwarf stars are believed to be the most common star type in the universe. Proxima Centauri, the nearest star to the Sun, is a red dwarf (Type M5, magnitude 11.0), as are twenty of the next thirty nearest. However, due to their low luminosity, few are known.
Exoplanets have been discovered orbiting red dwarfs in 2005, one as small as the size of Neptune, or seventeen earth masses. It orbits just 6 million kilometers from its star, and so is estimated to have a surface temperature of 150 °C, despite how dim the star is.[link]. In 2006 a planet similar in size to Earth was found orbiting a red dwarf; it lies 390 million km from the star and its surface temperature is -220 °C.
See also
- Cataclysmic variable star
- Hertzsprung-Russell diagram
- Red giant
- Yerkes luminosity classification
- Stellar evolution
- White dwarf
- Brown dwarf
- Flare Star
- Nemesis (star)
References
- Alpert, Mark (Nov. 2005). "Red Star Rising". Scientific American, p. 15.
- [Neptune-Size Planet Orbiting Common Star Hints at Many More]
External links
- http://www.aavso.org/vstar/vsots/fall03.shtml
- [Stellar Flares] - D. Montes, UCM.
- [Red Dwarfs]
- [Red Star Rising : Small, cool stars may be hot spots for life] - Scientific American Magazine (November 2005)
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