Japan's room temperature quantum computer Shunkai goes live with 50 qubits

Started by WildManCena23, Yesterday at 04:31 PM

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Topic: Japan's room temperature quantum computer Shunkai goes live with 50 qubits   Views(Read 69 times)
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Japan has switched on a full stack quantum computer called Shunkai that runs at room temperature. It was developed by the Institute for Molecular Science, part of the National Institutes of Natural Sciences, working with Hitachi and US company Infleqtion, which supplied the quantum processing unit. It currently runs with around 50 qubits. The plan is to grow that to about 500, with a target of a 10,000 qubit system by March 2031

Shunkai uses neutral atoms, where each qubit is a single atom held in place by laser light. Operations are carried out with microwave or laser pulses, and results are read by watching the light the atoms emit. The big selling point is that it does not need the giant cryogenic fridges that superconducting machines rely on to get close to absolute zero. That removes a lot of cost and complexity

Full stack means the system includes every layer needed to turn a user's input into a useful result, in the same way a laptop or phone hides all the complicated bits from you. Professor Kenji Ohmori said opening the machine to theory and software researchers, as well as corporate researchers, should create ripple effects towards practical applications. The main focus for now is developing and testing quantum error correction

IFLScience is honest that quantum computers still cannot beat top supercomputers at most tasks. Fifty qubits is modest compared with some of the machines out there, and scaling up remains the hard part. Still, neutral atoms have been one of the more promising routes to large systems, and having a working machine available to outside researchers is valuable

I like the room temperature angle, though it is worth remembering the atoms themselves are still cooled with lasers inside the machine. It is the surrounding hardware that stays warm. Does anyone think neutral atoms will end up winning the race, or will superconducting qubits stay ahead?


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