Google reveals major milestone quantum computing development

Source: Google Quantum AI
The development of super-powerful âquantum computersâ appears to be a step closer after a groundbreaking announcement by Google.
Researchers at Google Quantum AI have managed a new milestone in quantum computing, with chips â dubbed Willow, that can correct errors below a âcritical thresholdâ.
The team has published a description of its latest chip in Nature magazine.
Quantum computers promise to be an order of magnitude more powerful than classical computers at solving certain problems.
âItâs fair to say that this is the most significant demonstration to date of quantum error correction,â says Professor Stephen Bartlett, a quantum physicist and director of the University of Sydneyâs Nano Institute, who was not involved with the research.
Google claims Willow would theoretically take just five minutes to solve a problem that would currently take the worldâs fastest super computers ten septillion years to complete.
Where classical computers use bits of information to compute, quantum computers use qubits, which can hold and process far more information.
Existing quantum computers are, for now, proof-of-concept: theyâre not yet usable for any practical applications. Thatâs because theyâre extremely vulnerable to noise â even tiny fluctuations in the quantum computerâs environment can cause huge numbers of errors in the qubits.
Researchers have been working on ways to manage these errors, and a particularly promising method is âquantum error correctionâ: spreading information over lots of qubits to identify and compensate for errors.
But adding more qubits also adds more errors. Researchers have been trying to build a quantum computer that can correct more errors than it introduces â this is called the âsurface code thresholdâ.
âMany research teams and companies have been working towards a demonstration of this type for a long time,â Bartlett tells Cosmos.
âItâs all about showing that quantum error correction, something that is key for quantum computing, can actually work in practice.â
Google Quantum AIâs paper represents the first quantum computer to pass this threshold.
The team used their newest generation of quantum chip architecture to build a 72-qubit processor and a 105-qubit processor.
They could run code on the quantum computer for 1 million cycles, over several hours, while error-correcting in real time.
They were able to lower the number of errors while making the computer more complex, which demonstrates that theyâve passed the threshold.
âThere have been a number of previous results which have demonstrated aspects of quantum error correction,â says Bartlett.
âHowever, this is the first demonstration of the essential ingredient, showing that if you increase the size of the quantum code, things actually get better.â
âOur results present device performance that, if scaled, could realise the operational requirements of large scale fault-tolerant quantum algorithms,â write the authors in their paper.
This article first appeared in Cosmos. Read the original here.
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