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Two Indian Institute of Science scientists crack mystery of black holes

Brahmos_2

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BANGALORE: A scientist from Indian Institute of Science (IISc) Bangalore, and his student have successfully applied Albert Einstein's gravity theory to unlock the mysteries of black holes.

Banibrata Mukhopadhyay, associate professor, department of physics, IISc, and his student Indrani Banerjee worked for over two years for their landmark discovery. Their study on black holes has been acknowledged by the scientific community across the globe, including professors from Harvard University. The duo has published its findings in the international journal Physical Review Letters.

Black holes, as stars are known postdeath, are not visible to the plain eye. Though not visible, black holes devour everything in their neighbourhood given the gravitational pulls they exercise. It was hitherto believed that mass and spin are the determining properties of black holes and they would go a long way in determining the influence of black holes on their neighbourhood as well as their pre-death star existence.

Their new study, says Banibrata, who worked in Harvard for three years before joining IISc in 2007, throws more light on black holes and their properties, particularly the correlation between mass and spin or rotation. They have proved that mass and spin are not independent of each other but actually interdependent. They have established that mass of the star could be used to calculate the spin.

"The spin of the observed black holes is still a debatable issue — the exact value of the spin is not known. On the other hand mass can be determined more easily. Rotation of the black hole is determined by the mass and rotation of the initial star. The larger the mass of the initial star the greater it tends to have a high rotational speed and turn into swiftly spinning black holes. The smaller the mass of the initial star the slower its rotation and spin. This property shows that spin and mass are correlated. Hence if mass is known, the spin can be predicted. Eventually, only one fundamental parameter characterizes the black hole," Banibrata explained.

Indrani, a PhD student of physics, said, "First we were working on how stars collapse and end up into black holes. During the research, the thought of discovering the properties emerged," she said.

WHAT ARE BLACK HOLES?

Black holes are formed when stars exhaust their 'nuclear fuel' or are 'dead'. They are abyssinian spaces that exert strong gravitational force on everything in their vicinity. The hole is called 'black' because it absorbs all the light that hits the horizon, reflecting nothing. The largest black holes are called 'supermassive'. These black holes have masses that are more than 1 million suns together.


Two Indian Institute of Science scientists crack mystery of black holes - The Times of India
 
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congrats to them

BANGALORE: A scientist from Indian Institute of Science (IISc) Bangalore, and his student have successfully applied Albert Einstein's gravity theory to unlock the mysteries of black holes.

Banibrata Mukhopadhyay, associate professor, department of physics, IISc, and his student Indrani Banerjee worked for over two years for their landmark discovery. Their study on black holes has been acknowledged by the scientific community across the globe, including professors from Harvard University. The duo has published its findings in the international journal Physical Review Letters.

Black holes, as stars are known postdeath, are not visible to the plain eye. Though not visible, black holes devour everything in their neighbourhood given the gravitational pulls they exercise. It was hitherto believed that mass and spin are the determining properties of black holes and they would go a long way in determining the influence of black holes on their neighbourhood as well as their pre-death star existence.

Their new study, says Banibrata, who worked in Harvard for three years before joining IISc in 2007, throws more light on black holes and their properties, particularly the correlation between mass and spin or rotation. They have proved that mass and spin are not independent of each other but actually interdependent. They have established that mass of the star could be used to calculate the spin.

"The spin of the observed black holes is still a debatable issue — the exact value of the spin is not known. On the other hand mass can be determined more easily. Rotation of the black hole is determined by the mass and rotation of the initial star. The larger the mass of the initial star the greater it tends to have a high rotational speed and turn into swiftly spinning black holes. The smaller the mass of the initial star the slower its rotation and spin. This property shows that spin and mass are correlated. Hence if mass is known, the spin can be predicted. Eventually, only one fundamental parameter characterizes the black hole," Banibrata explained.

Indrani, a PhD student of physics, said, "First we were working on how stars collapse and end up into black holes. During the research, the thought of discovering the properties emerged," she said.

WHAT ARE BLACK HOLES?

Black holes are formed when stars exhaust their 'nuclear fuel' or are 'dead'. They are abyssinian spaces that exert strong gravitational force on everything in their vicinity. The hole is called 'black' because it absorbs all the light that hits the horizon, reflecting nothing. The largest black holes are called 'supermassive'. These black holes have masses that are more than 1 million suns together.


Two Indian Institute of Science scientists crack mystery of black holes - The Times of India

Thanks for info

BTW they may get Nobel
 
. . . . .
if proved correct yes this will be a proud moment for all iitians and rest of literate indians,
 
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There's no such things as black holes! It's just a theory to fit mathematical equations. No one has seen them - of course you can't, as supposedly even light can't escape its gravity. But these are just conjectures.

In a very interesting paper I was reading the other day, by Stephen J. Crothers on Black Holes, he says that this has been conjured up by combination of confusion, superstition and ineptitude, and is sustained by widespread suppression of facts, both physical and theoretical. It does seem that black holes and even the Big Bang are myths perpetuated by a disingenuous coterie. According to him, it has been recently proved that the black hole and the expanding Universe are not predicted by General Relativity at all!


As per Nikias Stavroulakis:

* The given distribution of matter cannot be reduced to a point.

* Black holes never appear in solutions of the Einstein equations.


An alternative to black hole theory has been bolstered by observations of an object in the distant universe, researchers say. If their interpretation is correct, it might mean black holes do not exist and are in fact bizarre and compact balls of plasma called MECOs (Magnetospheric Eternally Collapsing Object).

According to the MECO theory, objects in our universe can never actually collapse to form black holes. When an object gets very dense and hot, subatomic particles start popping in and out of existence inside it in huge numbers, producing copious amounts of radiation. Outward pressure from this radiation halts the collapse so the object remains a hot ball of plasma rather than becoming a black hole.

"I believe this is the first evidence that the whole black hole paradigm is incorrect," says Darryl Leiter of the Marwood Astrophysics Research Center in Charottesville, Virginia, US, who co-authored the study. He says that where astronomers think they see black holes, they are actually looking at MECOs.

Nuff said.
 
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oh so you don't get teleported to another dimension if you go through them? I can say I'm not disappointed.:undecided:
 
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