Quantum Motion raises $160 million to build quantum computers from standard silicon transistors

By Stephen Nellis SAN FRANCISCO, May 7 (Reuters) – Quantum Motion on Thursday said it raised $160 million to fund its effort to build a quantum computer that is โ€Œsmaller, cheaper and more energy efficient than rivals using standard silicon chipmaking techniques. Quantum โ€Œcomputers hold the promise of solving problems that regular computing machines cannot.…


Quantum Motion raises 0 million to build quantum computers from standard silicon transistors

By Stephen Nellis

SAN FRANCISCO, May 7 (Reuters) – Quantum Motion on Thursday said it raised $160 million to fund its effort to build a quantum computer that is โ€Œsmaller, cheaper and more energy efficient than rivals using standard silicon chipmaking techniques.

Quantum โ€Œcomputers hold the promise of solving problems that regular computing machines cannot. At the heart of that ability is โ€‹what is known as a qubit.

Unlike the transistors in an everyday computer that can only represent a zero or a one at any given time, a qubit can represent both at once. There are a variety of ways to make qubits, like the superconductors used by IBM or โ€ŒAlphabet’s Google, or hitting neutral atoms โ with lasers.

The challenge with each of them is scaling up to the thousands or millions of qubits needed to make a working quantum computer. โ London-based Quantum Motion took a different approach: Take something that is easy to make in the millions, such as the transistors used in chips in phones and laptops, and figure out how to โ€‹make โ€‹qubits from them.

“We just kind of started the company โ€‹in reverse,” said James Palles-Dimmock, Quantum โ€ŒMotion’s CEO. “What are the minimum adaptations that we can make to transistors to turn them into high-quality qubits?”

In a classical computing chip, a transistor is either on or off and electrons flow across a gap when the transistor is on. Quantum Motion suspends a single electron in the gap and manipulates it with a magnetic field.

This so-called “electron spin” concept is not entirely โ€Œnew – several other startups, as well as Intel, โ€‹are using it. Quantum Motion believes it has found a โ€‹way to make it work in โ€‹practice with chips made by manufacturing partner GlobalFoundries. Palles-Dimmock said this could โ€Œallow Quantum Motion to make useful quantum โ€‹computers for as little โ€‹as $10 million to $20 million.

“We’ve got a very clear path to delivering the world’s most powerful computer at a reasonable cost,” Palles-Dimmock said.

The funding round was co-led by DCVC โ€‹and Kembara, with participation from โ€ŒBritish Business Bank and Firgun. Also joining the round were existing investors Oxford โ€‹Science Enterprises, Inkef, Bosch Ventures, Porsche Automobil Holding and Parkwalk Advisors.

(Reporting by Stephen โ€‹Nellis in San Francisco; Editing by Thomas Derpinghaus)

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