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Computer that makes objects invisible

A University of Liverpool mathematician has designed a unique computer model, bringing closer to reality, making objects such as airplanes and submarines appear invisible at close range.

The ‘invisibility cloak’ made out of ‘metamaterial’ can bend electromagnetic radiation such as visible light, radar or microwaves around a spherical space, making an object within this region appear invisible. Until now, scientists could only make objects appear invisible from far away.

Liverpool mathematicians Dr. Sibastien Guenneau, together with Dr. Fridiric Zolla and Prof. Andri Nicolet from the University of Marseille, France, have proven — using a specially designed computer model called GETDP— that objects can also be made to appear invisible from close range when light travels in waves rather than beams.

According to Dr. Guenneau at the University’s Department of Mathematical Science, metamaterials could be of use in military technology, such as in the construction of fighter jets and submarines, but it will be some years before invisibility cloaks can be developed for human beings.

"The shape and structure of aeroplanes make them ideal objects for cloaking, as they have a fixed structure and movement pattern. Human beings and animals are more difficult as their movement is very flexible. So the cloak— as it is designed at the moment— would easily be seen when the person or animal made any sudden movement," said Dr. Guenneau.

"A cloak, such as the one worn by the Harry Potter character, for example, is not yet possible but it is a good example of what we are trying to move towards. Using this new computer model we can prove that light can bend around an object under a cloak. This happens because the metamaterial that makes up the cloak stretches the metrics of space in a similar way to what heavy planets and stars do for the metrics of space-time in Einstein’s general relativity theory," he said.

"In order for the cloaking device to work, in the first place, light has to separate into two or more waves resulting in a new wave pattern. Within this pattern we get light and dark regions which are needed in order for an object to appear invisible. — ANI





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