Researchers at the University of Surrey have designed a novel qubit based on superfluid helium-3, predicting error rates 100 times lower than those of conventional superconducting qubits. The proposed device, named the Superfluid Helium Oscillator Quantum (SHOQ), uniquely combines microfluidics with charge-neutral superfluid helium to potentially bypass vulnerabilities to electromagnetic noise.
University Of Surrey Designs Superfluid Helium Qubit To Cut Errors By 100x
Researchers at the University of Surrey have designed a novel qubit based on superfluid helium-3, predicting error rates 100 times lower than those of conventional superconducting qubits. The proposed device, named the Superfluid Helium…
Quantum Zeitgeist
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Sep 8, 2026 at 7:52 AM UTC · Updated vor einem Tag · 2 Min. Lesezeit

“We are not the first to think about the individual components behind this idea, but what we have done for the first time is bring them together in a microfluidic device and work out the specific details that could enable the device to function as a qubit,” explains Dr. Priya Sharma, Research Fellow in Hybrid Quantum Systems. The team’s calculations, published in npj Quantum Information, suggest this design could offer a pathway toward more stable and scalable quantum computing.
Superfluid Helium Oscillator Quantum (SHOQ) Device Design
This predicted reduction stems from the device’s core material; superfluid helium-3, a unique liquid state exhibiting frictionless flow, forms the basis of the newly proposed qubit design. The team detailed a microfluidic architecture integrating previously explored components, specifying functionality within a complete qubit system for the first time. The SHOQ device uses charge-neutral superfluid helium, a characteristic the researchers believe will provide inherent immunity to certain electromagnetic interference sources.
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