I Have a Little Black Hole
Chapter 110: Difficult Antimatter Research
Seeing the researchers coming from various laboratories one after another quickly filled the conference room with more than half of them, Lei Tiantang's mood improved, and nearly a thousand researchers all passed. The company's strict screening process only recruits elites and geniuses. With so many people helping him find a way, maybe he will catch a cold!
In addition, after Liu Helong asked Lei Tiantang for instructions, he also invited scientists from the state to conduct research here. There were nearly 1,200 people sitting in the large conference room.
Anyway, the things discussed today are things that cannot be done for the time being. It is no big deal to involve scientists from the country. Of course, Lei Tiantang will not refuse. Maybe their rich experience and insight can also provide What about some good ideas?
After seeing Liu Helong nodding to indicate that everyone had arrived, Lei Tiantang said with a smile, I'm bothering you all to do research, but I invited you to come here to share with you about things related to your research.
In order not to waste everyone's time, let's go straight to the topic. Let me first talk about what problems I encountered before I came to ask you for advice!
Seeing that everyone's attention was quickly concentrated, Lei Tiantang continued: I believe you should all know about the construction of a dedicated spaceport for the laboratory discussed at the company's high-level regular meeting today. Not much to say, that's your business.
But after I went back, I thought about it and found that your hadron collider laboratory seems to be able to do very few experiments on the spaceport, because many researches related to high-energy physics are inseparable from hadron pairs. collided.
But we all know that the big guy under our butt has a perimeter of 99.8 kilometers. If we want to calculate the weight, it is estimated that it will exceed 1 million tons. This kind of big guy is obviously already the strength of our company in a short period of time. There is no way to build a bigger guy in space.
After all, it cost more than 10 billion US dollars to build this big guy on the ground. Even if we were to build a hadron collider of the same size in space, even if our technology could be completed, the cost of that construction I don't think our company can afford it with such abundant funds.
But whether or not you can build it is one thing, and whether you want to build it is another. Don't tell me you haven't thought about building a larger hadron collider, or even one that is bigger than ours in space. The hadron collider used now is much larger to help you explore more unknowns!
Hearing the laughter from the conference room, Lei Tiantang also continued with a smile on his face: I knew you all had this idea, so I came here today to talk to you about it.
I've been thinking about developing an antimatter engine and other related antimatter research lately,
But you as front-line scientists should also know our current predicament, that is, the antimatter we can collect is really poor!
I took a look at your research on antimatter, and I carefully collected the little bit of antimatter I did in any experiment, and it just ran out in a few moments.
At present, the only equipment we humans have that can collect antimatter is our hadron collider, so I came here today to discuss with you how to collect more antimatter faster?
And do you have other ideas about antimatter collection? It doesn't matter if you are imaginative. Let's brainstorm together. What we can't do now doesn't mean we can't do it in the future!
And if we can only collect antimatter with a tool like the hadron collider, then we need to talk about the design and construction of the larger hadron collider.
What I came here today is what I said. Now everyone can speak freely about your own thoughts. I believe that those of you who are engaged in research must have thought about these issues. Say it and let everyone communicate together!
Let me say it first! Boss, there is absolutely no problem with you wanting to get more antimatter by building a collider with a higher energy level and a larger scale.
We have no evidence to show that there is natural antimatter, so we can only obtain antimatter through this high-energy shock method when we prepare antimatter. Since you have started to study this aspect, boss, I believe you will know that everything changes. Zong means it.
Our laboratory has also done a lot of experiments on antimatter collection. For example, using ultra-high-energy lasers to irradiate related matter can also see traces of the existence of antimatter, but in the final analysis, the appearance of this antimatter also conforms to the law of conservation of energy. of.
Although we can also obtain antimatter by irradiating matter with short-pulse lasers, there are far fewer types of antimatter than those obtained by high-energy collisions such as the hadron collider.
Although any matter composed of elementary particles may have corresponding antimatter, the energy generated by the combination of antimatter and its corresponding positive matter may also be different.
Therefore, although we are constantly conducting experiments on laser irradiation and other aspects, for now, the collider is still the most important tool for collecting antimatter. The head of the Antimatter Research Laboratory was the first to answer.
Others also support his statement. Everyone is engaged in research in this area. Of course, they will also think of any ideas that they can think of. Of course, they will also start experiments if they can do experiments. Antimatter experiments Laboratory experiments have proved this.
And what everyone understands is that unless they can collect naturally occurring antimatter from nature, no matter what means they use, they cannot do without using powerful energy to impact the corresponding particles to obtain antiparticles.
And now the most mature method is of course the hadron collider they use. Although they are also researching other methods, unless some related basic theories are broken again, they can only use this method to create antimatter. .
I think so too. Although the antimatter detector we designed has been placed in Earth's orbit for more than half a year, so far there has been no proof that there is a natural antimatter star region in the universe. Only Some areas suspected of antimatter have been found, and we are still working hard to find a way to confirm this. The head of the laboratory responsible for exploring unknown particles in the universe continued.
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