Yan Shixi did not say anything wrong. After the experiment was officially started, the emitted particle beam was basically stable below 5 gev. The signal captured by the atlas detector is basically concentrated between the energy zones of 1-10gev.

Occasionally there are one or two special cases that appear outside the upper limit of the 10gev energy zone, but they do not deviate too far.

Under such circumstances, naturally, no data of 750 gev will be generated.

However, such a result, it is impossible to believe that the 750gev energy zone definitely has what Luke convinced.

The experiment lasted for a whole day.

Probably at 12 o'clock in the morning, there was a cheer in the cern headquarters dozens of kilometers away.

From the data fed back by the various detectors, the confidence of the five quark-state particles captured in the eye has exceeded 5 sigma, and all the evidence indicates that the five-quark state particles have been discovered!

Although everyone has expected this for a long time, those speculative things are far from being more exciting when this moment really happens.

Generally speaking, the quarks that are torn apart in the collider either form a "quark-antiquark" pair similar to k mesons and pions, or "three quark states" such as protons and neutrons. As for the single quark state, since the quark is bound by the strong force of the color charge, the single quark state particle is not allowed to exist.

However, quantum chromodynamics does not prohibit the existence of singular states such as "four quark states" and "five quark states."

Over the years, major high-energy physics laboratories have been searching for these "singular states" on various colliders.

If these mavericks are not found, it proves that our standard model may have loopholes, and quantum chromodynamics may not be correct.

However, once these singularities are discovered, confidence in the entire theoretical physics community will be a great boost!

According to Cern's consistent urine, almost the second day after the end of the experiment, I couldn't wait to send an invitation to reporters waiting in Geneva to hold a very high-profile press conference.

Standing in front of the media reporters, Cern’s spokesperson announced the news in an excited tone.

"...we succeeded in discovering the five quark state particles, which is another great victory for the standard model! We are once again convinced that the path we have chosen is correct!"

Unsurprisingly, the discovery of the five-quark state particles will be the most significant research result of this year's physics, covering the light of all other research results.

In the midst of a surge of applause, Cern’s press conference ended, and a large number of media reported on the discovery.

However, for the physicists gathered here, the real work has only just begun.

In order to better reveal the physical properties of the five-quark state particles, the lhcb International Cooperation Group assigned tasks to researchers in various countries to perform a full-spectrum analysis of newly discovered particles.

After the task was assigned, the research team of Academician Lu was also involved in this work.

However, compared with the previous data of the "Joint Inspection" b1 division with Syracuse University, this time the task is not so tight in terms of timing, and can even be said to be quite loose.

Later, Lu Zhou asked Yan Shixiong to know that this piece of the game was different from the previous one. Every paper that was "full spectrum analysis" will be signed by all the researchers.

There are too many co-authors, the gold content of the paper is infinitely weakened, and everyone is doing everything. There is no subject collision, and no one needs to compare with anyone. Naturally, no one is so anxious. According to the workload assigned to each team, it takes more than one month to get all the work done.

Sitting in the conference room of the hotel, Lu Zhou said on the a4 paper, while in a chattering voice, said to the strict brother who was sitting next to him.

"Thousands of signatures... When I think of the paper I am about to finish, I will be tagged with more than a thousand names, and even more than half of the names will be in front of me. My enthusiasm for this job will be reduced. A little bit."

"It’s like this for cern. It’s such a place where you will be ruined, so I don’t recommend you here. Although our work is equally great, the Nobel Prize cannot be given to every witnessing history. People..." Yan brothers yawned and put the pen down and stretched out. "Isn’t going to play billiards at night?"

Lu Zhou thought about it and shook his head. "No, I am looking for Professor Grayer. I have to go to the office of a building."

When he visited the site last time, Professor Grayer promised him that after the experiment was over, he would take time to help him sort out the data collected during the test channel.

Just now, he received an email from Greer, saying that the data had been sorted out and he was taken to the office with a u disk.

Although it is not too long to copy the data, Lu Zhou is ready to use the leisure time in the evening to study this data well.

After all, during the day, I’m busy with the Lu’s project, and I can only use it for weekends and evenings.

Yan Shixiong saw the idea of ​​Lu Zhou at a glance: "Don't tell me the last thing."

Lu Zhou: "It was guessed by you."

Yan Shixiong, a defeated expression, sighed and said: "Well, I admire your attachment... Although I want to say that you are doing nothing."

Lu Zhou smiled and said: "Is it useless? How do you know if you don't try?"

No way, others are like this, when doing mathematics, it is the same when it comes to physics.

For the characteristic peak that appeared at 750gev, he is still very interested until now.

Although Yan Shixiong and Professor Grayer both said that the flat protrusion can not be called a characteristic peak, a large probability may be just a two-photon signal, and even a collision does not necessarily occur. Because the energy it carries is so exaggerated, even five times that of Higgs particles!

However, Lu Zhou does not think so.

The number 750gev may seem to be "heavy", but that doesn't mean there is no possibility.

Investigating the frontiers of any discipline requires imagination, and the bulging peak of this suspected feature peak has already had the space for imagination in Lu Zhou's view.

Even in the eyes of two experts who focus on quantum chromodynamics, this phenomenon is contrary to "common sense" and has no research value. However, the common sense of physics is not applicable to the scientific research personnel born in Lu Zhou.

What is the development of quantum chromodynamics?

Isn't it by subverting "common sense"?

It doesn't matter if it's wrong, right is an attempt without cost of failure.

After dinner, Lu Zhoushun went to the building, and Professor Grayer was waiting for him in the office.

"The data you want is in this u disk, including the data collected on the cms detector. I also helped you with one. But to be honest, this data is useless at all. We only do collisions with the 1tev energy zone. In less than an hour, in addition to testing the sensitivity of each detector, this thing has no useful experimental results."

Lu Zhou: "Thank you... I just want to satisfy my curiosity. I want to try it out whether I use it or not."

"Curious?" Professor Grayer smiled and gave him a look of encouragement. "I will wish you good luck."

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