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Tian Yanzhen narrowed his eyes slightly and asked, "The spectral distribution of random matrices and the high-dinsional unification of modal paths?"

"Oh? Director Tian, how did you know? You didn’t attend the salon that day."

Tian Yanzhen glanced at Qiao Yu and said, "Your Senior Brother Chen reported to . He said you also asked him to remind you when he got back."

"Haha, well, it’s not entirely that. The theoretical derivation isn’t much of a problem. What I want to do is simulate quantum states with classical electronic computing. I’ve thought about it, the modal path and modal density function can simplify the understanding of the evolution of high-dinsional states in random matrices.

I plan to design a system so that supercomputers can simulate large-scale complex state quantum systems based on a modal frawork. It can run Shor’s algorithm, Grover’s algorithm, quantum graph traversal, etc., on classical supercomputers without obstacles, and incidentally, develop more classical quantum algorithms."

Qiao Yu said with great enthusiasm.

Tian Yanzhen frowned slightly and asked, "I’m not very familiar with quantum computing. But as far as I know, algorithms like Shor’s require very high precision in quantum state operations. Do you believe that classical electronic supercomputing hardware can perfectly simulate them?"

Qiao Yu pointed at himself and said, "Director Tian, at the beginning of the year, when I said I could solve the Riemann Conjecture, people thought I couldn’t! They even rejected my project! Last year when I ntioned establishing a modal axiomatic system, they doubted too.

Look, all those who questioned were eventually proven short-sighted! Although this project wasn’t initially my idea, I’ve listened to many explanations from those who have researched for a long ti and read a lot of materials, so I’m very clear on whether a project has potential or not.

In fact, those guys have been using random matrices to study the statistical properties of high-dinsional state distributions. If we use modal paths to transform the spectral distribution of random matrices, it simplifies the description and evolutionary computation of high-dinsional quantum states.

Moreover, through the modal density function, we can extract the global features of high-dinsional quantum states, thus avoiding exact simulations state by state and bit by bit. Additionally, I can design more appropriate mathematical tools through a generalized modal space, such as modal decomposition operators, modal spectral analysis, modal topological mapping...

In short, if you don’t trust anyone else, you have to trust ! Overall, the future I envision is that once this project is approved, we will completely change the future of quantum computing."

Tian Yanzhen subconsciously picked up a pen and twirled it unconsciously, thought for a mont, and then asked, "Have you thought about what kind of experts the project team needs?"

Qiao Yu imdiately replied, "The core team should ideally have two experts in quantum algorithms, an experienced quantum physics expert, and two to three engineers familiar with supercomputing architecture.

As for non-core mbers, those doing so statistics and parater tuning work, the more the rrier. But I think if the core team consists of professors from Yanbei University, their students should suffice.

Of course, the most essential mber is . I’ll handle all the mathematical issues. The specific results and any potential economic benefits will be distributed based on the contributions of each individual."

Tian Yanzhen could roughly confirm that Qiao Yu wasn’t spending all his energy on romantic pursuits lately.

He had already thought through the entire project proposal. This kid was even thinking about how to distribute the results...

"You plan to allocate the results and economic benefits? If you apply for funding from the Natural Science Foundation, the transformation or comrcialization of project results requires approval from the Foundation Committee! And unit approval!

If there’s indeed an economic impact, there are regulations on how the benefits are distributed! It’s not up to you to distribute based on contributions! And if Shor’s algorithm can truly run efficiently, it’s not rely a matter of comrcial value!"

Tian Yanzhen said with deeper aning.

Although he had not researched quantum systems, he was still familiar with the renowned Shor’s algorithm.

This thing can be directly linked to a nation’s core technological competitiveness, even national financial security.

Even if granted approval for use, a dedicated security managent agency would definitely be involved.

Qiao Yu nodded, righteously replied, "I know! I’ve specifically researched the ’Law on Promoting the Transformation of Scientific and Technological Achievents,’ which states that at least 50% of the comrcialization benefits should be used to reward the research team and individuals.

The contributions I’m talking about are internal, which I will decide. As for the particularity of Shor’s algorithm, I’ve considered it. With every spear, there’s a shield. The algorithm experts in the team are there to design new encryption algorithms that can ensure information security in the era of efficient Shor’s algorithm operations.

For comrcialization, we can earn money not through the quantum simulation system but with the new encryption algorithms. I’ve been taught since childhood that I must not be a disruptor of financial order, but its guardian!"

His emphatic speech indeed made it hard for Tian Yanzhen to evaluate.

To be honest, he wasn’t keen on letting Qiao Yu embark on such a perilous project at such a young age.

Yes, at least in Tian Yanzhen’s eyes, this project carried significant risks. Even its success would be riskier than failure.

The reason was not unlike why he was hesitant to let Qiao Yu join the lunar project initially.

Once such a project gets approved and achieves phased success, the team mbers, let alone the project initiator, could all end up under surveillance.

At that point, Qiao Yu might really have no chance to engage in any face-to-face communications.

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