Chapter 183: The Neutrino Communication Problem

On August 20, Zhou Yu received a message from Zhao Zhao, the head of the neutrino laboratory, requesting technical support.

When a scientist publishes this information, he encounters a problem that cannot be solved for the time being, and needs to solve it with the help of the knowledge of other scientists.

Very few people can cross lines of research and ask for help from others, as long as they don't name names, they generally ask for help from Zhou Yu.

The character created by Zhou Yu in Xinghuo Technology is that he has a flexible head, is good at solving problems, and knows a little bit about any discipline.

It gives people a feeling that their knowledge is very comprehensive, but they are not very exquisite, and once they encounter problems, they can make unexpected suggestions to scientists through a huge knowledge reserve.

It is precisely because Zhou Yu has this ability that he can suppress these unruly scientists and manage scientists as the director of the Science and Technology Committee.

Otherwise, he is just the boss who provides the funds, and the scientists only use it as an ATM, and they will respect him, but they will not respect him.

Zhou Yu went to the scientific research center to check the problems encountered in neutrino communication.

He went to the Neutrino Communication Laboratory and found Professor Zhao Zhao frowning at a huge box.

Professor Zhao Zhao's eyes were red, and his face looked very tired, and this face looked like he had stayed up all night for a long time.

Zhou Yu comforted: "Scientific research is a long-term work, our company does not advocate a short period of research, and wants to quickly develop technology."

This method is not scientific at all, and a mature technology is that the foundation of every aspect has been laid, and it is not intended to be inspired by scientists. ”

Zhao Zhao smiled bitterly: "I can't help it, I'm too anxious during this time."

Cooperative companies such as ZTE and Huawei have completed their technical standards, and neutrino communication has completed 99%, and only these two technologies can be officially networked and verified.

I couldn't let our company delay the project, and I thought I would be able to solve the problem quickly.

As a result, after several months of research and development, Mozi and I cooperated and proposed more than 300 solutions, none of which could solve the problems encountered. ”

Zhou Yu also understood Professor Zhao Zhao's anxiety, or he was too smooth sailing and did not encounter setbacks.

He also believed too much in Mozi's ability, and he must know that some of the solutions proposed by Mozi were not calculated by artificial intelligence, but the technology that Zhou Yu saw through the technology tree and secretly stuffed into Mozi's program.

This is also an important reason why Zhou Yu has been slow to let others master the source code of artificial intelligence.

Even the company's key executives have stood the test of time and can be trusted.

As soon as someone gets their hands on the source code of the AI, his secret is exposed.

It seems that in the future, it is still necessary to strengthen the psychological capacity of scientists, especially some scientists who have not encountered setbacks when things have been smooth sailing.

Let them taste the taste of failure, increase their ability to resist setbacks, and don't have a glass heart that affects the performance of their own skills.

"Professor Zhao, what kind of problems are you encountering, I also have some research on neutrino communication, maybe I can think of a direction that you have not thought about and try to solve these problems." Zhou Yu asked Zhao Zhao.

Zhao Zhao sighed and explained to Zhou Yu the difficulties encountered in neutrino communication.

The challenges they encountered were all related to the neutrino capture modulator, which is the core component of neutrino communication.

The first question is that neutrino capture modulators require a huge amount of energy to operate, up to 10,000 kilowatt-hours of electricity per day, which is nothing on the ground? But in space, that's an extremely difficult problem to solve.

Zhao Zhao's approach is nothing more than to make the neutrino capture modulator less energy-intensive, or to allow it to operate on the ground.

The first way of thinking is simply not possible, neutrinos are light particles that barely react with anything and cannot even be affected by electromagnetic forces.

Superheavy particles must capture neutrinos in space with weak interaction forces.

Maintaining the existence of superheavy particles requires a huge amount of electrical energy, and it is necessary to exceed the limit of energy in order to maintain this man-made superheavy particle, which was accidentally discovered.

If the power supply to the neutrino capture modulator is reduced, there is no way to maintain the presence of superheavy particles.

This almost falls into a paradox that cannot solve the problem of neutrino capture modulators by this line of thinking.

The second idea is to put the neutrino capture modulator on the ground, which is also not very feasible.

Neutrino transmission is not like electromagnetic waves, which are like light, although they travel in a straight line.

However, in the atmosphere, due to the different density of air, it is also divided into different layers such as the ionosphere and stratosphere.

There are three forms of propagation of radio waves, direct waves, ground waves and sky waves, usually direct waves are used to propagate television signals, and sky waves and ground waves are used to transmit sound signals of radio broadcasting stations.

Even if it is a direct wave, it can be refracted and reflected in the atmosphere, and it can basically propagate along the atmosphere, but the propagation distance is slightly shorter.

A set of electromagnetic wave signals is sent in Huaxia, and the receiver in Los Angeles, USA, will definitely be able to receive it.

It will not be launched directly into space along the tangent of the Earth's curve.

This is not the case with neutrino communication, because it does not refract and reflect in the atmosphere, it penetrates the atmosphere directly.

Neutrino communication travels in a straight line, directly along the tangent of the Earth's surface.

Not to mention the atmosphere, even the earth can be directly penetrated.

It's just that the signal that penetrates the earth has become a relatively scattered neutrino signal through the influence of the earth's core, which cannot be used to transmit accurate information.

In this way, unless the distance is relatively short, the base station is placed on the ground, and the neutrino signal cannot be received from a distance.

Neutrino capture modulators cannot be arranged as arbitrarily as cell phone cell towers.

One is that the cost of doing so is too high, and it wastes a huge amount of electricity, even if the three major operators combined, they can't afford such a huge amount of consumption.

If you call for a minute, you will be charged 1 million directly, and no one can afford such an expensive phone.

The other is to waste the performance of the neutrino communication network, which itself has the ability to propagate over long distances, and can avoid the impact of the Earth's surface as long as it is placed in the air.

The second problem encountered in neutrino communication.

A neutrino communication base station not only transmits neutrino signals, it also receives neutrino signals.

Although Zhao Zhao studied neutrino capture debuggers specifically for transmitting signals and neutrino receivers specifically for receiving signals.

But in a relatively small place, the two devices interfere with each other.

For example, a neutrino capture modulator will receive a neutrino signal that has been modulated and is ready for the neutrino receiver to receive.

After mutual interference, it will cause distortion of neutrino signals and affect the accuracy of neutrino communication.

After listening to Professor Zhao Zhao's explanation, Zhou Yu immediately understood the problem of neutrino communication, and the core problem was that Professor Zhao Zhao still did not understand the operation principle of the neutrino capture modulator.

Because the neutrino capture modulator was directly stuffed by Zhou Yu to Mozi in order to be in a hurry, so that Professor Zhao Zhao could directly manufacture it in an unexpected situation.

He only knows what it is, and he doesn't know why, and of course he will be confused.

But Professor Zhao is also very talented in neutrino communication, in addition to this core equipment, he has developed a complete set of auxiliary equipment to match it.

Zhou Yu immediately entered a state of contemplation, and he went to the technology tree to check the details of the neutrino capture modulator.

The neutrino capture modulator information given on the tech tree is more complex and should allow him to come up with a concrete solution.

"I want to be quiet, I already have a general inspiration." Zhou Yu said with a smile.

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