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Collision wormholes can send gravitational waves rippling through space-time

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<p><span style= In a discovery, astronomers have concluded that the existence of black holes occurred through numerous models, experiments and observations. 2015, the data collected from the LIGO experiment have been revolutionized in the study of astrophysics when scientists have confirmed that Einstein's theory of general relativity detected gravitational waves for the first time.

Gravitational waves ripple in space-time, and is similar to the waves created by the stone that was thrown into the pond.According to scientists, they have postulated the gravitational waves that can occur during the supernova and the two massive objects orbit each other when the two massive objects collide.

According to the astronomers at the LIGO observatory that saw the gravitational waves and the two black holes that They sung in each other 1.3 billion years ago. A team of physicists who are present at the University of KU Louvain in Belgium and are studying the possibility that black holes do not exist and in place, wormholes can create gravitational waves.

The black holes that are present in the greatest contradiction of the principles of quantum mechanics and also have a horizon of events in which a point is present, and there is no turning back for any object that crossed the line. To address the conflict, physicists Pablo Bueno and Pablo A, Cano and they are looking at compact objects like wormholes. It is said that wormholes are tunnels in spacetime, and can be crossed to create a shortcut in another universe. Einstein has predicted that wormholes along with his theory of relativity and wormholes do not have an event horizon.

The team has found a theoretical model that explains how scientists can identify the gravitational waves that come from the collision of two wormholes. The graphics that are detected from the model are not different from the existing records, and they are, except for the existence of echoes.

The study was published in the journal Physical Review D.

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