Near centaurus stars with the rocket propulsion needs to reach more than 50000 years, but if the flying at the speed of light, distance may be in four years or a shorter period of time to complete, and Eric luntz to the general theory of relativity "soliton" put forward by the space agency estimated distortion is difficult to develop drive, to achieve such a spaceship has a long way to go, We will encounter additional problems that are tough to detect.
And as far as we understand, there are still a few hurdles to overcome, in part because what Lentz calls the energy warp drive requires a lot of energy, like the aforementioned 100-meter radius spacecraft. Erik Lens says it would take hundreds of times the mass of Jupiter for such a spacecraft to probably travel faster than the speed of light. It would require the same amount of energy as destroying a tiny star.
The power output of current nuclear fission reactors is 30 orders of magnitude less than that, which is a problem because you need a lot of energy to deform space, and spacecraft merely don't have the capacity to do that, although it's a huge challenge. But Eric Lentz is convinced that these challenges can be overcome, and that the problem is one step closer to theoretical research in fundamental physics.
In summary, the question to consider is how to accelerate the curvature of space-time to a speed faster than the speed of light while reducing the amount of energy required. Of course, there are people who think that wormholes could be another way to travel through space and time, using wormholes to travel through the galaxy in less than a second. Of course, all of this is still a theory, but I believe that we can continue to research, continue to develop, and one day, we will be able to realize this theory, don't you think?
German scientists have proposed a warp engine with more power than a Jupiter
Thus far, the ability to travel faster than light has only been seen in science fiction movies, but if we were really able to achieve this, then we could easily access the rest of the galaxy and we could travel faster than ever before, saving most of the time. But numerous people may never imagine the problem of traveling at the speed of light or even faster, because the problem is too unrealistic, but scientists have brought the distortion engine realized in the science fiction movie Star Trek to reality. Is it actually possible for humans to achieve the speed of light or even faster? Today we're going to talk about how the Warp Engine can achieve FTL!
First of all, today we're going to put aside the idea that we can't go faster than the speed of light, that the laws of physics are not set in stone, and that some things may be beyond our understanding. For example, what we call a warp engine today, also called a curvature engine, is really the purpose of faster-than-light speed is to get us to a certain destination quickly, so if we could figure out how to bend or warp space-time, we could move around the universe in the blink of an eye.
While twisting engine devices are still mostly the preserve of science fiction, some recent discoveries by German physicists about the nature of space-time suggest that Einstein's supposedly unbreakable speed limit might not be the case. Then does this mean that it's possible to warp space-time to travel faster than light? The concept is a bit difficult to sell, since it is commonly believed that no known object can travel faster than light in a vacuum. According to the special theory of relativity, Albert Einstein, a famous man is unlikely to spacecraft launch outside our Milky Way galaxy, because too far away, humans can't reach the speed of light, which means humans' current speed could not insist on such long time travel, constantly in a word, is the speed limit.39bet-kết quả bóng đá-kết quả xổ số miền bắc-kèo bóng đá -soi cầu bóng đá-đặt cược
We understand that objects have mass, and it is only in the absence of mass that it is possible for particles to travel at the speed of light. As far as we know, according to the current laws of physics, nothing can accelerate faster than the speed of light when you look at it from another angle. However, this limit only applies to the four dimensions of the universe, and beyond that, it's not impossible to go faster. There is no doubt that humans will never be able to travel the great distances of the universe with our current technology. It would take more than four years for a beam of light to reach the nearest star to Earth in the nearby Centauri, and it would take tens of thousands of years for humans to get there even with the best propulsion engines available.
People have repeatedly fantasized about building colonies in different star systems, but no one has ever made the journey. From laser-accelerated solar sails to nuclear propulsion, it's possible that future travel times could be reduced, but even with these technologies, they won't go extremely far in a human lifetime, but only those traveling at the speed of light or faster will be able to reach deeper into the universe. Thus imaginative physicists have long pondered the ultimate propulsion system, the curvature engine, by which spacecraft could fly between galaxies, on another level that's not exactly pseudoscience, so it's possible.
Today, Albert Einstein's theory of relativity is divided into two parts, broad and narrow. Special relativity, which originated in 1905, is concerned with objects, and the acceleration of those objects. General relativity states that the three most familiar dimensions of space are inseparable from time. Thus, according to Albert Einstein's pioneering found that will distort our every quality in spatial structure existing in the four-dimensional space-time, so there would be no such thing like static space-time, when it is in contact with the larger objects, it will be like a tablecloth deformation, therefore in the tablecloth or space-time moving everything can only move at the speed of light.
Antependium can, on the other hand, the deformation at any speed, as the universe in some cases, such as the big bang, the initial space-time structure obviously by drawing a fraction of a second, much more than any the speed of light, even today, the expansion continues to accelerate away from the movement of our extremely distant galaxies, faster than the speed of light, And stopped their light from reaching us. Scientists speculate, based on the data we have found, that we are really only a tiny step away from warp drive going faster than light by compressing space-time in front of a spacecraft and expanding it behind it. And the craft would be encased in a bubble, so the crew would be protected from the effects of a giant interstellar trip, which is a fairly far-fetched idea, I have to say.
However, expressing this idea in the language of general relativity immediately presents huge practical difficulties, because we would need to bend space-time very dramatically to keep the bubble moving, as well as to push the space in front of it to contract, thus pushing the whole structure forward. However, one astrophysicist has given fresh life to this warp-driven concept by discovering different ways to bend space types.
Dr Eric Lentz, a physicist from the University of Goertingen in Germany, has discovered different forms of space-time bubbles built around spacecraft by delving deeper into Einstein's complex theory. These bubbles, called solitons, are identical to those previously proposed by Dr Alcubier. However, Eric Lentz's breakthrough discovery was that some of these bubbles could be made using traditional materials. According to him, conventional energy sources might be able to construct space-time in the form of solitons that would act as warping bubbles, compressing the space in front of it while expanding the space behind it.
Space-time, unlike anything we know, can bend, expand, or warp at any speed, so a spacecraft trapped in a hypervelocity bubble can travel faster than light in normal space without violating any physical constraints, not even Einstein's cosmic speed limit, so when will we see the birth of this spaceship? It would be a huge investment, but with a huge return.
Near centaurus stars with the rocket propulsion needs to reach more than 50000 years, but if the flying at the speed of light, distance may be in four years or a shorter period of time to complete, and Eric luntz to the general theory of relativity "soliton" put forward by the space agency estimated distortion is difficult to develop drive, to achieve such a spaceship has a long way to go, We will encounter additional problems that are tough to detect.
And as far as we understand, there are still a few hurdles to overcome, in part because what Lentz calls the energy warp drive requires a lot of energy, like the aforementioned 100-meter radius spacecraft. Erik Lens says it would take hundreds of times the mass of Jupiter for such a spacecraft to probably travel faster than the speed of light. It would require the same amount of energy as destroying a tiny star.
The power output of current nuclear fission reactors is 30 orders of magnitude less than that, which is a problem because you need a lot of energy to deform space, and spacecraft merely don't have the capacity to do that, although it's a huge challenge. But Eric Lentz is convinced that these challenges can be overcome, and that the problem is one step closer to theoretical research in fundamental physics.
In summary, the question to consider is how to accelerate the curvature of space-time to a speed faster than the speed of light while reducing the amount of energy required. Of course, there are people who think that wormholes could be another way to travel through space and time, using wormholes to travel through the galaxy in less than a second. Of course, all of this is still a theory, but I believe that we can continue to research, continue to develop, and one day, we will be able to realize this theory, don't you think?
Near centaurus stars with the rocket propulsion needs to reach more than 50000 years, but if the flying at the speed of light, distance may be in four years or a shorter period of time to complete, and Eric luntz to the general theory of relativity "soliton" put forward by the space agency estimated distortion is difficult to develop drive, to achieve such a spaceship has a long way to go, We will encounter additional problems that are tough to detect.
And as far as we understand, there are still a few hurdles to overcome, in part because what Lentz calls the energy warp drive requires a lot of energy, like the aforementioned 100-meter radius spacecraft. Erik Lens says it would take hundreds of times the mass of Jupiter for such a spacecraft to probably travel faster than the speed of light. It would require the same amount of energy as destroying a tiny star.
The power output of current nuclear fission reactors is 30 orders of magnitude less than that, which is a problem because you need a lot of energy to deform space, and spacecraft merely don't have the capacity to do that, although it's a huge challenge. But Eric Lentz is convinced that these challenges can be overcome, and that the problem is one step closer to theoretical research in fundamental physics.
In summary, the question to consider is how to accelerate the curvature of space-time to a speed faster than the speed of light while reducing the amount of energy required. Of course, there are people who think that wormholes could be another way to travel through space and time, using wormholes to travel through the galaxy in less than a second. Of course, all of this is still a theory, but I believe that we can continue to research, continue to develop, and one day, we will be able to realize this theory, don't you think?