The Cosmic Squeal of the Very Strong Radio Explosions from the Depths of the UniversesteemCreated with Sketch.

in #world7 years ago

The Cosmic Squeal of the Very Strong Radio Explosions from the Depths of the Universeevrenin-derinliklerinden-gelen-cok-guclu-radyo-patlamalarinin-sirri-1508099538.jpg

Astronomers who try to explain the rapid radio bursts with high energy levels that can not be described with very short life span seem to have reached a consensus that it may be an unknown source.4156e8334ae5807bfe19ede27dc3b924a82d602c.jpeg

Some of the bright sparkles in the head are being spotlighted. These things, called rapid radio bursts, are known as mysterious, short-lived and very powerful energy bursts from distant galaxies. These shimmers, which are only as much of a part of you as you are, are emitting energy that has sunk about 500 million suns. We are faced with an astrophysical puzzle of power and short-lived possessions that we have: what could be causing this kind of explosion? Astrophysicists had conceived that the only thing that could produce energy in such a short period of time was a single catastrophe, for example, the collapse of stars or the collision of black holes.96e14e0aa599f37288d6793f825e10cd09285ac6.jpeg

But they did detect fast radio bursts that were repetitive about two years ago. In this case, a single event could not be discussed. The researchers reported that in late August these repetitive bursts were going to be 15 glows per hour. James Cordes, an astronomer at Cornell University, thinks it can help explain why not just the repetitive bursts, but also the irregularities seen in the explosions. Cordes, who finds that the burnt gas or plasma clouds in the main galaxy where the explosion is experienced could increase the intensity of the explosion up to 100 times. "Compressing radio waves makes explosions much easier to detect," he says.26a64e822d41c69eabfa13075bdb51b6bea766b0.jpeg

In addition, the plasma lenses that they exhibit also exhibit dynamic characteristics (lenses that can actively observe changes in the intensity of change over time). The gas can not always grow the source. Since no images can be viewed during this time, the source appears to be still. "Despite the fact that the FRB sources are actually always active, it may seem like there is a big fluctuation in the burst of explosions due to dynamic imaging," says Cordes. Cordes' statement may not fully explain the extraordinary brightness of the Fed. Many astronomers believe that neutron stars in the loop with high magnetic fields can produce FRBs. Nonetheless, magnetars known to Earth are much less energetic than the energy of uninterrupted radio bursts from distant planets. Even if they were strengthened at the source, the FRBs would have higher energy than all known magnets.

In this case, we have nothing but to say that the information we have in the light, during the voyage of the so-called fast radio bursts, may be imparted by the cosmic force with such speed and energy.

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