The Primitive Black Holes they have become quite a natural phenomenon not very common. However, it is important to note that this fact is of great relevance both for the universe and for scientists and physicists. In this article I will have the opportunity to share with you everything related to them, origin, data and relevant research about these types of holes.
Primitive Black Holes

Primitive Black Holes are those that have a much smaller mass than the rest and were also formed due to the collapse of anomalies in the early stages of the universe. These would obtain a temperature higher than 2,7º above the exact zero and, in addition, they would express a very fast radiation.
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6 Surprising Facts About These Types Of Black Holes
There is much research supporting these natural phenomena, five of them are:
1. Half Life
Un black hole primitive, with an original mass of a billion tons would have a half-life around the age of the universe. This could be related to the formation of black holes in general and facts about black holes.
2. Evaporation
On the other hand, Primitive Black Holes with initial masses lower than the previous one would already have reached the evaporation completely. This is a concept that could be related to other phenomena in the universe, perhaps in the studies on gravitational waves.
3. X-Y Rays Gamma Rays
There are some Primitive Black Holes with slightly higher masses, they would still be expressing radiation in the form of X-rays and also gamma rays. Similarly, X-rays and gamma rays are like light waves, but with a shorter wavelength. Such holes barely qualify as black, since they are actually blazing white, exposing energy at a rate of about ten thousand megawatts.
4. Primitive Black Holes Would Power Power Plants
In another sense, it is important to mention that a black hole of this size could operate ten large power plants, if we could harness its power. However, this would be excessively difficult since it would have a mass of one trillionth of a centimeter, that is, it would have the size of the nucleus of an atom. This powerful performance is linked to the energy that can be obtained from them, as well as to other phenomena of the .
5. Primitive Black Holes And The Earth
If you had one of these black holes in the Earth's surface, There would be no way to stop it from flattening out on the ground and reaching the Earth's center. In other words, it would oscillate through the Earth, back and forth, until it finally stopped in the center. This raises interesting questions about the gravitational field in relation to these phenomena. Additionally, the astronomical studies about their behavior are fascinating.
So the only place to put this black hole, so that the energy it exposes could be used, would be in orbit around the Earth, and the only way to get it into orbit it would be by attracting it by means of a large mass placed in front of it.
In this sense, the possibilities that we assume to be able to observe a primitive black hole are scarce since they are insufficient, and finding one sufficiently close to us to be observed is impossible.
6. Closest Primitive Black Hole
It is estimated that the closest black hole would be about a billion kilometers or the same distance as Pluto, which is the farthest of the treated planets.
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Method to Detect a Primitive Black Hole
To claim that a Primitive Black Hole is observed, a gamma radiation derived from the same direction would have to be revealed in a sensible space of time, for example, a week. Otherwise they could be part of the background radiation.
Likewise, in order to reveal this gamma radiation, it would be necessary to make a gamma ray detector larger than those that have been built so far. At the same time, the detector would have to be in space because gamma rays cannot pass the atmosphere. An interesting option would be to use technologies such as those of Chandra Telescope.
On the other hand, these holes cinereous vultures they can explode, however, in order to manifest this fact, a method would have to be found and a detector of gamma rays derived from the explosion would be required. The greatest revealer of gamma rays that there is is the Earth's atmosphere, since it does not allow them to pass to the Earth and it is unlikely that we would be suitable to build a larger detector.
This is why the disappearance of an observable amount of Primitive Black Holes is due to the fact that the ancient universe was regular, similar and with high pressure, an aspect that is studied in the literature about the universe.
Notable Studies
Un equipment astronomers has stated about the most primitive black hole ever discovered, despite the fact that it was hidden by large masses of gas and dust in the galaxies in which it is found. Similarly, researchers have also managed to measure their rate of development and have proven that they developed at the same time as their galaxies.
Likewise, Kevin Schawinski, an astronomer at Yale University, points out that "This means that there has been a symbiotic relationship between black holes and their galaxies since the beginning of time."
Far Distant Signs
For his part, Rafael Bachiller, director of the National Astronomical Observatory, He states that since they were hidden, "the radiation from the outskirts of the holes, being blocked by the nearby medium, did not significantly contribute to the re-ionization of the gas."
Similarly, the team used a technique called 'stacking' to reveal the extraordinarily weak signals expressed by the holes, the furthest of which is 13.000 km away. million light years.
It is a trip to the retrospective, because, due to the distance, what astronomers observe is what they were like when the Universe it was only 700 million years old, given that it is estimated to be 13.700 billion years old.
Also, astronomers focused on 250 distant galaxies previously discovered by the Hubble Space Telescope. They used the Chandra X-ray Telescope of the NASA, which replicated the signals emitted by black holes as they captivated nearby gas and dust.
By this fact, the result was that they discovered only the most energetic X-rays, which means, Schawinski explains, that there are black holes hidden behind large amounts of gas and dust in those galaxies. "This explains why they were so difficult to find," testifies the American astronomer.
In another sense, regarding their advancement, the cosmologist Priyamvada Natarajan, likewise from Yale, states that these black holes very massive they progressed together with their galaxies.
That is, if they were 700 million years after the Big Bang it is because they were already so strong from the beginning or that they noticed a rapid and unprecedented growth, ”says Natarajan. But whatever the choice, it records that "much more is now known about its principle than before."
For Bachiller, although the work provides significant clues about the development of black holes with masses greater than 10.000 solar masses, the origin of the first seeds of black holes remains to be established, that is, the first holes that should have had masses of so only between 10 and 10 solar masses.
The Spanish astronomer outlines the possibility that the first stars of the Universe, after their collapse and death, resigned supermassive black holes; or perhaps they were caused by the direct collapse of interstar clouds.
What seems certain is that the progress and growth of these black hole seeds created, by absorbing material from the environment, major holes, as well as the formation of galaxies in accordance with their masses.
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In conclusion, there are several Primitive Black Holes that despite their long years, are still preserved in the universe.


