"It's true that our observation distance is limited now, and we haven't found any valuable targets. However, after a long time of observation, I believe we will be able to find a lot of beacons!" Kuafu said confidently.

"Yes, our main task is to confirm the position of the small black hole in the universe, so the importance of the beacon is very important. It can be the extragalactic galaxy that we observe from the earth, which can let us confirm the approximate position.

But if we want to accurately locate, we still have to rely on pulsars, which are very easy to distinguish. As long as we can find enough pulsars, and then by comparing the data of pulsars we have observed from the earth, we can know exactly where the body of the small black hole is Lei Tiantang agreed with Kuafu's point of view with a smile.

The universe is vast, with countless galaxies and celestial bodies. Human beings have been shocked by the mystery and vastness of the universe since they came out of the earth. At the same time, they have aroused the enthusiasm of human beings to explore the universe.

However, due to the limitation of human science and technology, the area that the spacecraft can reach is very limited, which also makes it impossible for us to send spacecraft and probes to the deep space.

However, mankind has invented the astronomical telescope with its own wisdom. With the astronomical telescope, we can observe the galaxies and celestial bodies in the distant universe and see some mysteries of the universe. With the help of astronomical telescopes, human beings have more and more knowledge of the universe.

In the process of observing the universe, we found that there are some mysterious and special celestial bodies in the universe, such as neutron stars, pulsars, black holes, and so on.

Pulsar is a very special kind of celestial body in the universe. It can rotate at high speed, and at the same time, it can also send out regular radio signals.

You know, in our cognition, objects that can send out regular radio signals are likely to come from alien civilizations!

At first, human beings received this kind of radio signal, which was once thought to be the civilization signal sent by alien civilization to human beings. But in the end, it was found that these regular radio signals came from this kind of celestial body called pulsar. From then on, pulsars came into the view of scientists, and scientists also searched for more pulsars through various methods.

Pulsars can send out radio signals, and the most powerful tool to find them is the radio telescope, whose function is to receive radio signals from the universe.

Through the observation of these radio telescopes, we have found a lot of pulsars, which also shows that pulsars are not very rare objects in the universe, and their number is still very large.

This also makes many people feel even more confused, what is this pulsar? Is it really just a natural celestial body? How did it form and why did it send out regular radio signals?

The reason why people are more and more interested in the pulsars of the universe is that the pulsars of the universe are more and more interesting to scientists.

Some people think that pulsar is a kind of signpost built by advanced civilization of the universe. The purpose is to guide the spaceship, so as not to be lost in the universe.

The reason why most of us can't find a way out in the distance is that we can't find the right way to go out without the help of navigation signs.

In the past, when there was no satellite navigation, we mainly relied on setting up signs at all important intersections, so that drivers and cars would not get lost. Now with satellite navigation, no matter where you go to the earth, you will not get lost.

A small earth is inseparable from navigation, and in the vast universe without boundaries, if there is no navigation, the spacecraft can not navigate at all, and it is easy to get lost in the boundless universe. You should know that the universe is not so bright, everywhere is a dark. Human beings are still unable to get out of the solar system. They just wander around the solar system, and naturally do not need any powerful navigation.

But once the speed of the future human spaceship can reach the speed of light, with the ability of interstellar navigation, the distance that can fly will be very far. At that time, how can we travel in the universe without getting lost?

It must require some space navigation equipment. The space distance is in light years, and the object is the landmark. I believe that spaceships beyond a few light years can not see it. Only the speed of the radio signal can reach the speed of light, so that it can travel fast and far, and can be quickly received by spaceships. The current position of the universe can be determined by the indication of these signals.

We can think of pulsar as a navigator set up by advanced civilization in all positions in the universe. Its high-speed rotation is actually producing energy. With energy, it can continuously send navigation signals to the outside world, which is equivalent to a generator with its own. With electricity and energy, it can work continuously.

Each pulsar sends out different signals. In fact, it indicates the current space coordinates, so that the spacecraft can understand which region and which Galaxy the spacecraft is traveling to when receiving the signals from these pulsars.

This feature of pulsars is the reason why Lei Tiantang and Kuafu attach great importance to them. Because of this, there will be a separate radio telescope in the astronomical telescope this time. Its goal is to find these beacons that can be located in the universe!"It depends on our luck and time. If we are lucky, we can find familiar pulsars, like the sun's position relative to the center of the galaxy and the 14 pulsars on Voyager 1's gold disk. If we can find them, we can quickly determine the location of the small black hole!

If you are not lucky, you can only use time to pile up the data slowly. You should know that up to now, we have only a few thousand pulsar data. If you want to use them as beacons, if you are not lucky, you will not be able to compare them!

So the radio telescope on the side of the small black hole should try to find more pulsars, and we should also work harder to find more pulsars on the earth. When the data in our pulsar database is enough, I believe we can always find the beacon matching each other, so as to confirm the position of the small black hole!

And I think this data, when our deep space laboratory launches all the eight high-power radio telescopes that we plan to launch, we will have a great harvest! "

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