![]() Lentz said a lot of work will be needed to make the method become a reality. The researchers’ plan promises the hope of faster-than-light-speed travel, which could lead to “distant interstellar travel within a human lifetime.” But a light speed trip would take only four years and three months, Lentz added. A trip using nuclear propulsion technology would take about 100 years, he said. Lentz said that using traditional rocket fuel, it would take about 50,000 to 70,000 years to reach Proxima Centauri. A light year is the distance it takes light to travel in one year. The nearest star beyond our solar system is Proxima Centauri. That could make future travel to distant space objects possible. Lentz told Reuters news agency that such a “ warp drive” technology could be used to sharply reduce travel times. ![]() The method “uses the very structure of space and time arranged in a soliton to provide a solution to faster-than-light travel,” said a press release explaining the process. The results recently appeared in the publication Classical and Quantum Gravity. The research suggests that such a method could permit travel at any speed. A soliton is a compact wave that keeps its speed and shape while moving with little loss of energy. The research describes a plan to permit superfast travel by creating a series of, what the researchers call, solitons to provide the basis for a powerful propulsion system. The new paper places more importance not on theoretical research, but on a possible engineering solution. ![]() This kind of matter either cannot be found or cannot be manufactured in necessary amounts, the paper states. They call for “ hypothetical particles” and states of matter with unusual physical properties to permit faster-than-light travel. Physicist Albert Einstein’s famous theory of relativity suggests that it is not possible to travel faster than light.Īs a result, the latest research on the subject has centered on theories beyond normal explanations of matter. Light can travel at about 300,000 kilometers in one second. But this can happen only if space vehicles travel faster than the speed of light. Lentz and his team believe that travel to distant stars and planets could be possible in the future. The research was carried out by Erik Lentz, who did the work at Germany’s University of Goettingen. But is faster-than-light travel possible?Ī new research paper written by an American physicist has proposed a theory for how faster-than-light travel could be possible. In science fiction movies, there are many examples of spaceships racing through space at the speed of light or faster.
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