Recent Postings
Aug 31 IT BHU Chronicle: August '08 edition
Aug 30 Sad demise of Mr. Madan Mohan Tiwari (Electronics 1973)
Aug 28 Tesla hires Deepak Ahuja (Ceramic 1985) away from Ford to serve as CFO
Aug 28 Mata Prasad (Electrical 1954) - an expert in electrical protection systems
Aug 28 Satish Agarwal (Mechanical 1970) Chairman of Kamdhenu Ispat Pvt. Lyd.
Aug 28 Dr. Sandeep Gupta (B. Pharm 1982 & M. Pharm 1984) joins as Senior VP for Endo Pharmaceuticals
Recent Comments
Archives
August 2008
June 2008
May 2008
April 2008
March 2008
February 2008
January 2008
December 2007
November 2007
October 2007
September 2007
August 2007
July 2007
June 2007
May 2007
April 2007
March 2007
February 2007
January 2007
December 2006
November 2006
October 2006
September 2006
August 2006
July 2006
June 2006
May 2006
April 2006
March 2006
February 2006
November 2005
October 2005
September 2005
August 2005
July 2005
June 2005
Movable Type 4.1
October 21, 2007
Tech Talk: Massive Black Hole busts theory
Chronicle Editor @ Oct 21, 2007

http://www.space.com/scienceastronomy/071017-monster-bhole.html

space1.jpg
Monster Black Hole Busts Theory
By Ker Than
Staff Writer
posted: 17 October 2007
01:00 pm ET

space2.jpgA stellar black hole much more massive than theory predicts is possible has astronomers puzzled.

Stellar black holes form when stars with masses around 20 times that of the sun collapse under the weight of their own gravity at the ends of their lives. Most stellar black holes weigh in at around 10 solar masses when the smoke blows away, and computer models of star evolution have difficulty producing black holes more massive than this.

The newly weighed black hole is 16 solar masses. It orbits a companion star in the spiral galaxy Messier 33, located 2.7 million light-years from Earth. Together they make up the system known as M33 X-7.

"We're having trouble using standard theories to explain this system because it is so massive," study team member Jerome Orosz of the University of California, San Diego, told SPACE.com.

The black hole in M33 X-7 is also the most distant stellar black hole ever observed. The findings, detailed in the Oct. 17 issue of the journal Nature, could help improve formation models of "binary" systems containing a black hole and a star. It could also help explain one of the brightest star explosions ever observed.

Black hole eclipse

Black holes can't be seen, because all matter and light that enters them is trapped. So black holes are detected by noting their gravitational effects on nearby stars or on material that swirls around them.

The companion star of M33 X-7 passes directly in front of the black hole as seen from Earth once every three days, completely eclipsing its X-ray emissions. It is the only known binary system in which this occurs, and it was this unusual arrangement that allowed astronomers to calculate the pair's masses very precisely.

The tight orbits of the black hole and star suggests the system underwent a violent stage of star evolution called the common-envelope phase, in which a dying star swells so much it sucks the companion inside its gas envelope.

This results in either a merger between the two stars or the formation of a tight binary in which one star is stripped of its outer layers. The team thinks the latter scenario happened in the case of M33 X-7, and that the stripped star explodes as a supernova before imploding to form a black hole.

However, something unusual must have happened to M33 X-7 during this phase to create such a massive black hole. "The black hole must have lost a large amount of mass for the two objects to be so close," Tomasz Bulik, an astronomer at the University of Warsaw in Poland, writes in related Nature article. "But on the other hand, it must have retained enough mass to form such a heavy black hole."

The team estimates the black hole's progenitor must have shed gas at a rate about 10 times less than models predicted before it exploded.

"[M33 X-7] might thus provide both the upper and lower limits on the amount of mass loss and orbital tightening that can occur in the common envelope," added Bulik, who was not involved in the study.

Twin black holes

If other massive stars also lose very little material during their last stages, it could explain the incredibly luminosity of 2006gy, one of the brightest supernovas ever observed, the researchers say.

One day, the lone star in M33 X-7 will also disappear, notes study team member Jeffrey McClintock of the Harvard-Smithsonian Center for Astrophysics in Cambridge, Mass. "This is a huge star that is partnered with a huge black hole," McClintock said. "Eventually, the companion will also go supernova and then we'll have a pair of black holes."

While 16 solar masses is hefty for a stellar black hole, it is miniscule compared with the black holes thought to lie in the heart of many large galaxies. Such "supermassive" black holes have masses millions to billions times that of our sun, but they are thought to form by mechanisms different from the stellar variety.