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On the border of the space: Open the interesting life of the planes of black holes

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On the border of the space: Open the interesting life of the planes of black holes


There is a supermassive black hole in the center of almost all major galaxies, including the Milky Way (called) Sagittarius a *). Supermassive black holes are the most intense things in the universe, and the masses reach billions of times.

This is probably “wake up” after a sudden gas and dust flow from a supermassive black hole in a galaxy. Then it starts to swallow a large amount of gas and dust nearby. Not a quiet, slow or passive process. On a scale of several million degrees in the black hole in the material, it is hotter than the surface temperature of our Sun and at a speed of this light. This creates strong planes that look like springs in space.

Ultra-fast plasma, according to these springs, causes the emission of radio waves that can only be detected by a strong radiotel. Therefore their name: radiogenic. If black holes are common, this is not the case with radioogaluction. Only 10-20% of all galaxies present this phenomenon.

Giant radioogalaxies are more rare. They represent only 5% of all radioogalizations and take their names as they reach the giant distances. Jets of certain radiooglasies reach Almost 16 million light years. (Almost six times from the distance between the Galaxy of Milky Way and Andromeda). The largest jet discovered Ampie in about 22 million light years.

How can these structures cover such large distances? I took a study to find We have used Modern superordinators will model the behavior of simulated space jets based on the basic laws of physics managing space.

Thanks to these simulations, we were able to observe a process that was not possible to watch radio jets over hundreds of millions, directly in the real universe. These complex simulations allow the differences between the first compact stages and the differences between large and advanced forms, the life cycle of radiooglamalacies will better understand the life cycle.

Understanding the evolution of radiogalaxies helps you better understand the common processes that form the universe.

Superorinators

Sustainable technologies played an important role in this work.

Sensitive observations using advanced radiotelescopes such as Meerkat In South Africa and Promise In the Netherlands, recently allowed to discover several cosmic fountains.

However, modeling their origins remains a problem. It is impossible to watch events in real time in millions of years.

This is where the superordinators entered the game. These high-performance computer systems are designed for massive amount of data. They can make complex simulations in effective speed. In this study, the forces were very important to model the evolution of giant radio jets for millions of years.

Provided by the necessary calculation power Astronomy of the Institute of Interest Institute A network, including South Africa, including Pretoria University, Cover University and Western University.

Our universe is managed by fundamental forces such as weight, which can be described by mathematical formulas. These formulas are presented to superorers to create a simulated “fictional universe” that follows the same physical laws such as the numbers, essentially numbers, real space. This allows scientists to test the aircraft of superfassive black holes over time. Thanks to treatment forces, superorinators can simulate millions of years of cosmic planes in just one month.

The main lesson

The gravity is the dominant power of the universe. Attract a heavier issue and brings the light material nearby. If he was alone at work, the universe himself collapsed. But we see galaxies, galaxies and even the flourish of life. We believe that this space fountains play a key role in opening the secret of this balance.

Leaving heat and mechanical energy, the surrounding gas is collapsed, thus, is fresh and now a refreshing balance of space structures.

Our models allow the jets of certain radio registered, instead of following a flat trajectory, instead of following the radio waves, they strongly grow up and grow strongly. These giant springs even allowed to better understand how the galaxy continues to grow in tight space environments, such as the majority of galaxies.

The study shows that giant radioogalizaxes can be more than we think. There may be no unknown space springs. Thanks to the world, the power of telescopes and superordinators like Meerkat and Lofar, there is still a lot to try to understand our universe.

Research, including Jacinta Delaheni, including Jacinta Delaheni, including Jacinta Delaheni, including Astronomy and Astrofika University, India and DJ Saiikia, including Jacinta Delaheni and Astronomy and Astrophysics Center in India, DJ Saiikia. The important contributions of the Kshitij Thurat and Roger Diandun of Pretoria University also played an important role in the development of the work.



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