According to Abbey, the difference between quantum computers and traditional computers lies in their "language": traditional computers can understand binary instruction information represented by numbers 0 and 1, while qubits can represent both 0 and 1, just like the famous "Schrodinger cat" in the box. In other words, a single qubit can be 1 and 0, which means that the data storage capacity of each qubit increases exponentially.
The author of a research paper published in the journal Nature said that the computer revolution will enable people to find new materials for manufacturing light batteries for automobiles and airplanes, and to produce new catalysts and more effective drugs for fertilizers more effectively. However, there is still a long way to go. "In order to obtain the necessary computing power, it takes many years of hard scientific and engineering research," the author went on to say. But now we see a clear road, and we are eager to move on. Savin said: "At present, this is pure speculation, because the possibility of opening the door in this field is almost infinite." However, this will not happen tomorrow. "
The newspaper said that in the era of big data, algorithms and artificial intelligence, millions of pieces of data are transmitted every second. In this case, quantum technology is essential. For science, this is a qualitative and quantitative leap, as well as for business. This is not nonsense, because technology drives business.
"Microsoft companies such as Google and IBM will also have quantum computers to improve algorithms, which is for sure. But the government is also recovering. Savin believes that the main influence of quantum technology will be its application in science. However, it cannot be ignored that this technology is very attractive to technology companies with a large amount of user data. Therefore, quantum technology will have a far-reaching impact on artificial intelligence, machine learning and network security, so we will first test its impact in "network life".