EPFL engineers find promising way to boost computing power of quantum computers. – Science Business

Engineers at EPFL have developed a method for reading several qubits the smallest unit of quantum data at the same time. Their discovery paves the way to a new generation of even more powerful quantum computers.

IBM and Google currently have the worlds most powerful quantum computers, says Prof. Edoardo Charbon, head of the Advanced Quantum Architecture Laboratory (AQUA Lab) in EPFLs School of Engineering. IBM has just unveiled a 127-qubit machine, while Googles is 53 qubits. The scope for making quantum computers even faster is limited, however, due to an upper bound on the number of qubits. But a team of engineers led by Charbon, in collaboration with researchers in the U.K., has just developed a promising method for breaking through this technological barrier. Their approach can read qubits more efficiently, meaning more of them can be packed into quantum processors. Their findings appear inNature Electronics.

Biochemistry and cryptography

Quantum computers dont work like the computers were used to. Instead of having a separate processor and memory chip, the two are combined into a single unit known as a qubit. These computers use quantum properties such as superposition and entanglement to perform complicated calculations that regular computers could never do in a reasonable timeframe. Potential applications for quantum computers include biochemistry,cryptography and more. The machines used by research groups today have around a dozen qubits. Our challenge now is to interconnect more qubits into quantum processors were talking hundreds, even thousands in order to boost the computers processing power, says Charbon. The number of qubits is currently limited by the fact that theres no technology yet available that can read all the qubits rapidly. Complicating things further, qubits operate at temperatures close to absolute zero, or 273.15oC, says Charbon. That makes reading and controlling them even harder. What engineers typically do is use machines at room temperature and control each qubit individually.

Its a real breakthrough

Andrea Ruffino, a PhD student at Charbons lab, has developed a method enabling nine qubits to be read simultaneously and effectively. Whats more, his approach could be scaled up to larger qubit matrices. My method is based on using time and frequency domains, he explains. The basic idea is to reduce the number of connections by having three qubits work with a single bond. EPFL doesnt have a quantum computer, but that didnt stop Ruffino. He found a way to emulate qubits and run experiments under nearly the same conditions as those in a quantum computer. I incorporated quantum dots, which are nanometer-sized semiconductor particles, into a transistor. That gave me something that works the same as qubits, says Ruffino. Hes the first PhD student in the AQUA Lab to study this topic for his thesis. Andrea showed that his method works with integrated circuits on regular computer chips, and at temperatures approaching qubit ones, says Charbon. Its a real breakthrough that could lead to systems of large qubit matrices integrated with the necessary electronics. The two types of technology could work together simply, effectively and in a reproducible manner.

This article was first published on 6 January by EPFL.

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EPFL engineers find promising way to boost computing power of quantum computers. - Science Business

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