Research starts with PhD students
Chapter 284 Major progress in hydrogen bomb batteries!
Chapter 284 Major progress in hydrogen bomb batteries!
The biggest gain from the experiment on special points of the chaotic force field is that it is confirmed that the influence of the 'chaotic force field' is the norm during the experiment, that is, the influence of the force field has always existed.
As time goes by, the influence of the chaotic force field on the internal particles is continuous and stable.
The transformation of chaotic force field into strong force is a special point in the experimental process.
When there is no strong transformation, the influence continues and manifests itself as an impact on the movement of particles.
Scholars all believe that conventional gravity has appeared.
Among the four forces, gravity is the only force that can directly affect the movement of particles over a large range.
The experimental summary meeting is over, and the next step is to organize the data, improve the information, and publicly release the experimental research results.
The main results of the experiment were published in Source Point Physics.
After the information was released, it also attracted significant international attention.
The academic field is very concerned about the main content, and they also understand the specific conclusion information. The most important thing is that the transformation of the chaotic force field to the 'force affecting particle interaction' is continuous, while the strong force is a special transformation that occurs at a specific point, but does not affect the overall deviation data.
The main data of the experiment have been uploaded to the public platform.
All scholars who register on the platform can view the main data and research results, which sounds like it doesn’t matter whether you participate in the experiment, but this is not actually the case.
Just like the large-scale particle collision experiments in the past, scholars in the field of high-energy physics all hope to participate in the experiments, because other scholars can only see the main data and results, do not understand the experimental conditions, and cannot conduct research based on the public main data.
Those public results are of a general nature and can be understood as being very general statements without any specific research details.
A super large experiment has not only main results, but also many incidental results.
This is the case with super-large particle collision experiments and also with chaotic force field experiments.
Within two weeks after the experiment ended, 19 more papers were published on the experimental research on special points of the chaos force field.
The number of subsequent papers will certainly continue to increase.
Scholars who participate in experimental data analysis can write relevant research papers based on their work content.
After seeing so many results, more national institutions and scholars want to join the experiment.
There has also been a lot of discussion in the international public opinion, and many people are paying attention to the experiment in the hope of seeing whether any accidents will occur.
There had been an accident at Fermilab; there had been an accident at the Nuclear Organization.
They are all the same experiment.
If the Institute of High Energy Physics' Chaos Force Field Research Group conducts the same experiment, can the safety of the experiment be guaranteed?
Many people have been paying attention and waiting, but there has been no news in the public opinion. However, no news is also a result, which means that no unexpected situation occurred in the experiment.
It can now be confirmed that the experiment was carried out very successfully.
There were also many voices in the public opinion, "The experiment led by Professor Zhang Shuo is indeed different!"
"Accidents occurred at Fermilab and the Nuclear Organization, but there were no problems when Professor Zhang Shuo was in charge. What does this mean? This means that Professor Zhang Shuo has a deeper understanding of the experiment and a better understanding of the transformation of the chaotic force field..."
"This is just a small experiment. If the intensity is higher in the future, the research will be even more remarkable."
"We are still the best in the country in the field of new physics, so it is not surprising that we were able to complete the experiment."
Of course, there were also some sour comments, "Maybe the experiment was successful because it absorbed the experience of the two accidents?"
"When they did the final experiment, they knew where things could go wrong, so of course there wouldn't be any problems."
"There were already scouts ahead, so it was so successful..."
Many people also refuted that "the experiment of the Institute of High Energy Physics discovered a special node, which burned through the thermal insulation layer when it appeared, and then went to Fermilab because of equipment problems."
"I can only say that I was lucky, otherwise there would have been an accident long ago..."
Luck is also part of strength.
Even Yu Fei and others admitted that they were lucky. It was not easy to survive until now. The first time was at the experimental base of the Institute of High Energy Physics, and only the thermal insulation layer inside the equipment was burned through.
The second time at Fermilab, he was not allowed to participate in the experiment at all.
Both times, danger was avoided.
The Chaos Field Research Group did not discuss the relevant issues. They were studying another discovery with Zhang Shuo.
Test data of inert gas shielding layer.
The most important thing in the internal transformation of the main experimental equipment is to add an "inert gas protection layer". The protection layer is a mixture of neon and xenon gases, which can resist the strong diffusion effect, that is, block the conduction of the diffusion effect.
Among them, neon gas is affected by the strong diffusion effect, and a certain proportion of it will undergo nuclear fission reaction.
Xenon is almost unaffected.
After an experiment, the inert gas protective layer can be measured, its internal reaction can be detected, and compared with the chaotic force field experimental data.
If the data from the two are consistent, it can be determined that the experiment was very successful.
The results showed that there were significant differences between the two data.
"Neon's reaction rate is low."
"This is abnormal and cannot be explained."
"The situation of the inert gas layer does not match the experimental data. Why? Even if it is just the strong diffusion edge effect coverage, the deviation cannot be so large."
The office is full of scholars from the Institute of High Energy Physics, and there are no members of the international cooperation group, because the issue involved is the safety protection layer, and the inert gas protection is still confidential to the outside world.
The group discussed for a long time but came to no conclusion.
Zhang Shuo frowned and proposed a possibility, "Could it be that the 'resistance' of a single element to the strong diffusion effect is different under different temperature environments?"
"It's like a resistor. The higher the temperature, the higher the resistance. The resistance at different temperatures is different."
This statement caused the office to fall into silence.
Yu Fei was the first to react, "It's really possible. Different temperatures have different elemental resistances."
"It's just that it seems to be the other way around..."
"It's indeed the opposite." Zhu Wang said, "According to common understanding, the higher the temperature, the higher the element reaction rate, but..."
"It seems so!"
"The temperature inside the device is high, and the atoms in the inert gas layer will be very active. Normally, the reaction rate should be higher."
The discussion continued in the office.
Most people haven't thought about this question, of course, because they don't know much about the nuclear force splitting experiment, but their understanding is still correct.
Even if Liu Xu was called over, he would not think there was anything wrong with what they said.
The higher the temperature, the stronger the reaction. What's wrong?
Zhang Shuo was also surprised, but because he was very familiar with the theory, he immediately gave an explanation, "The resistance of an element to the strong diffusion effect is opposite to the reaction ratio."
"Elements do not react under high temperature conditions by following the strong diffusion effect. Instead, they release some unknown force or energy to resist the diffusion effect..."
"From this perspective, we can understand why the response rate has dropped."
"Also, our research is still very limited. Perhaps each element is different. For some elements, the reaction rate will increase as the activity increases, while for some elements, the opposite may be true." This statement explains the problem.
As Zhang Shuo was thinking, he thought of another problem. He had always hoped to develop a hydrogen bomb battery. The core of this problem was to find a material that could actively release a strong force field under the special environment of ultra-high temperature and nuclear fusion, so that the nuclear fusion reaction could be maintained continuously and stably without reaching the 'sustained reaction critical line (100 million degrees Celsius)'.
In nuclear fusion reactions, materials can play a regulating role, allowing the reaction to proceed stably.
By converting nuclear fusion into electricity, electricity can be exported continuously.
This is the concept of the hydrogen bomb battery.
The current discovery suddenly gave him a direction. He could find elements or materials that meet the requirements by testing the elements' strong resistance in ultra-high temperature environments.
"Different temperatures, different elemental resistances."
"What exactly is the element's resistance to the strong force diffusion effect? Perhaps it is to actively release a force field similar to a strong force to achieve the effect of resisting the spread of the force field?"
"It's like, force and reaction..."
"That explains it!"
As he thought about it, his eyes lit up and he felt that there was nothing wrong with his idea.
Regarding the nuclear fission reaction, what has been difficult to understand is why there is a "ratio" problem among the reacting elements.
For example, if there are a thousand carbon elements, after the reaction continues for a period of time, only a dozen or even fewer carbon elements will undergo nuclear fission reaction.
This is different from the principles of nuclear fusion and nuclear fission.
The internal reaction principles of nuclear fusion and nuclear fission are related to particle collisions. A large number of high-temperature and active particles cause collisions between neutrons and atomic nuclei, resulting in fission or fusion and the release of energy, which allows the reaction to continue.
The nuclear force splitting of the atomic nucleus is a reaction covered by field force.
The field force covers the past, and the atoms themselves will be affected and change.
So if we think conventionally, all atoms within the field coverage will react, not just a certain proportion.
Now there is a new explanation - elemental resistance to strong diffusion effects.
If we understand resistance as a strong reaction force, that is, atoms themselves have field force "resistance", and single atom reactions can also produce field force resistance effects, then the proportional problem of element reactions under strong diffusion can be explained.
"Inert gas, that is."
"Small atoms have a higher reaction rate, but they are more effective in resisting the strong diffusion effect, while large atoms have a lower reaction rate and are less effective in resisting the strong diffusion effect."
Zhang Shuo wasn't sure if his idea was right, so he just created a task -
【Task 1】
[Research Project Name: Theoretical Mechanism of Elements' Resistance to Strong Diffusion Effects (Difficulty: B).]
【Progress: 59.311%.】
(The task can be canceled. The current number of research coins required to cancel the task is 0.)
(The remaining progress requires 328 scientific research coins.)
"It's indeed right!"
After successfully establishing the mission, Zhang Shuo was also very excited. The progress of the mission also meant that the idea was correct.
This task also requires data research to support it.
Even though the primary mechanism of elemental resistance to strong diffusion effects is understood, completing research will provide a deeper understanding of the resistance issue.
Later, we can also find the research direction of "regulating materials" based on the theoretical situation.
The next step is to study hydrogen bomb batteries.
Zhang Shuo couldn't wait to think about it. After finishing the chaos force field experiment, he immediately went to the ion cannon R&D base to retrieve the elemental reaction data.
I spent a whole week stuck in the office checking data.
After walking out of the office, many people gathered around him curiously. Liu Xu took the initiative to ask, "Professor Zhang Shuo, did you gain anything?"
“It’s a great harvest!”
Zhang Shuo had an unconcealable smile on his face.
After completing the task submission, he had a deeper understanding of the elements' resistance to the strong diffusion effect.
At the same time, the research direction of "regulating materials" for hydrogen bomb batteries was found.
"What specific gains did you make?" Liu Xu continued to ask curiously.
Zhang Shuo said, "It's related to elemental resistance. Your last experiment, attacking the inert gas in the equipment, is related to this."
"Elemental resistance..."
"Hmm~"
Liu Xu thought silently for a long time, then simply shook his head, "I don't understand any theoretical content, and I don't understand the last experiment either. Anyway, I'll do whatever you tell us to do."
"I'm about to be transferred, and this time it's for real."
"Next time you come, you'll have to find someone else."
"congratulations!"
Zhang Shuo congratulated him sincerely, saying that Liu Xu's transfer meant a promotion.
The possibility of him being transferred to be directly responsible for major scientific and technological projects is not high. It is more likely that he will serve as the leader of a department, and he may be allowed to take charge only if there is major research in the future.
The position becomes higher, the work becomes less busy, maybe I am going to a good place...
Definitely worth congratulating!
Liu Xu said reluctantly, "This is my life... I can see so much gold every day, there is definitely no other place like this."
"Ah~~"
His mood was also complicated.
Zhang Shuo no longer cared about Liu Xu's mood.
After completing his research, he couldn't wait to go to his next destination - the Bureau of Science, Technology and Industry.
One reason for coming here is to apply for a new experimental project.
Secondly, we need to find a capable person to help with the experiment.
The new experiment is to test the resistance of elements to strong diffusion effects in ultra-high temperature environments.
This involves ultra-high temperature environment and nuclear fission reaction.
Maybe there will be an... explosion during the experiment?
In any case, because this is a new experiment, there may be some uncontrollable risks, and the different properties of each element may also bring other unknown risks.
However, research must be done.
Faced with such a complex and arduous experimental research, a name suddenly appeared in Zhang Shuo's mind - Tong Zhiguo.
Tong Zhiguo has a very good understanding of nuclear fission reactions. From the theoretical mechanism of the reaction to experimental problems, his understanding is even better than Liu Xu, and he also has very rich research experience.
He is the most suitable candidate!
(End of this chapter)
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