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One technology, what will take humans to Alpha Centauri

One technology, what will take humans to Alpha Centauri

By using this kind of technology mankind can travel to Alpha Centauri in about eight years, but that thing needs enormous systems. And traveling to further the craft should be more sophisticated than this version. The problem with interstellar visions is to select a suitable star for the journey, and then choose the suitable techniques for the journey would take a long time. By using the next kind of complicated techniques the journey to the other solar systems would be possible, but the system allows to travel to Alpha Centauri, and further journey needs more sophisticated techniques. 

When we are thinking about the technologies, what can be used to travel in interstellar space, we must realize that the pure systems are not possible to make. The best possibility of that kind of journey would be hybrid technology. In that technology, the multiple systems would accelerate the spacecraft across space, and if we would need to make systems, what is giving the necessary punch for interstellar spacecraft, we must realize that those giant lasers and electron cannons are also weapons. And in the real-life interstellar space journey, there are many problems for solving, before the real craft would send to trip. 

One of the biggest problems is how to get the spacecraft, which would travel with very high speed out of solar systems across the Oort Cloud in one piece. And that thing is very complicated because of the size or weight of spacecraft would be about 20 tonnes, it would pull other objects to it at very high speed. And if the speed is about 20-50% of the speed of light, the impact with every particle would be devastating. One technology that allows interstellar space travel possible is the hybrid technology, where the spacecraft would push to the journey by using the giant electron cannon. 

This cannon could be the artificial neutron star or the giant generator, which will create an extremely high energy field by using plasma or ionized gas, which will rotate the stator of the generator. This technology, what is imitating things, what is happening inside planet Jupiter, would make possible to load the spacecraft with energy at the same time it would use its electron or WARP-systems. In this case, the electron cannon would push the craft forward for giving more punch to its motors, and when the spacecraft would be accelerated to the very high speed, it would start to push by using the laser.

The electron cannon would orbit the sun between the Earth and Mars, and when the craft has been traveled to cross the trajectory of Neptune, it would get more punch from the very high power lasers or radiowaves, what is sent by the nuclear-powered laser and maser systems. In this scenario, this is orbiting the sun outside the trajectory of Neptune, and when the speed would be near the speed of the light, the photon motor of the system would be started. If the speed is less than 95-99 percent of the speed of light there is no benefit for launching the photon rocket. And at that speed, the craft would not have time to break or give away in the front of particles, what can be the size of the sand crystal. 

If we would put the laser outside the Oort Cloud, what will happen in that case? The system would be enormous, the length of that hybrid system, what might be the free-electron laser would be even hundreds of kilometers. The nuclear power would make it very heavy, and in that case, the problem is to get this system behind the Oort Cloud. And it will pull meteorites and asteroids to it. When the spacecraft is flying the speed what is high enough, the system would turn to use laser, what would give a lighter punch, but the impulse of that thing is higher than use particles like electrons and protons, what will give more punch than photons, but those heavier particles are slower. 

So in some visions that enormous machine would use to clear the particles away from the route of the spacecraft by using laser- or maser radiation, what will destroy the "snowballs" away from the route of the spacecraft. And in this case, the thing is that the smallest particles, what are the most dangerous might be left behind. 

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