Black hole Watch the moment a black hole devours a massive star … This is what the Big Bang produces … video



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Black hole Watch the moment a black hole devours a massive star … This is what the Big Bang produces … video

A team of scientists has discovered the state that occurs when a giant star is destroyed when it enters the range of a black hole, in a new study that sheds light on super-energetic cosmic rays.

Researchers affiliated with more than 20 international institutions, including New York University and the German Research Center (DESY), have studied one of the smallest elements in the universe, a “neutrino” (a neutrino is a elementary particle of mass much smaller than the mass of an electron, and it has no electric charge), which are subatomic particles that are only produced on Earth at very colossal speeds.

Recently, NASA’s Lunar Reconnaissance Orbiter (LRO) captured a single image of the Earth’s sphere from the starting point of the spacecraft in lunar orbit.

Researchers and scientists have discovered the presence of a high-energy neutrino resulting from the destruction of the star as it approaches the black hole, in a discovery that sheds light on the origins of super-energy cosmic rays, which are the particles the most energetic. in the universe, according to research published in the journal “Nature Astronomy”, a specialized scientific journal.

“The origin of high-energy cosmic neutrinos is unknown, mainly due to the difficulty in identifying them,” says scientist Siegret van Velzen, a leading research author and postdoctoral fellow in the University’s Department of Physics from New York, commenting on the find. This result will only be the second time high-energy neutrinos have been returned to their source.

Previous research by Van Velzen, now at Leiden University in the Netherlands, and New York University physicist Glennis Farrar, co-author of the article, found some of the earliest evidence of destruction of stars by black holes in what are now called “tidal disturbance events” (TDE).), As this process was responsible for the production of these neutrinos.
The new published research confirmed the accuracy of this information. Specifically, its measurements showed the spatial coincidence of a high-energy neutrino and the light emitted after the destruction of a black hole (consuming a star’s black hole) from a giant Star.

“The discovery of neutrinos associated with TDE (the consumption of star’s black holes) is a breakthrough in our understanding of the origin of high-energy astrophysical neutrinos,” said the research, which was shared by the scientific journal. scitechdaily “.

Scientists confirm that “monitoring for the presence of neutrinos in this process also sheds light on a decades-old problem, which is the source and origin of ultra-high energy cosmic rays.”

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