Newswise — Superfluid helium could offer a new way to tackle one of the biggest challenges in scaling up quantum computers, say researchers from the University of Surrey. The research team has introduced a conceptual design for a new type of qubit that could be much less vulnerable to errors.
Superfluid-Based Qubit Design Could Be Key To Scaling Up Quantum Computers | Newswise
Newswise — Superfluid helium could offer a new way to tackle one of the biggest challenges in scaling up quantum computers, say researchers from the University of Surrey. The research team has introduced a conceptual design for a new…
Newswise
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Sep 11, 2026 at 12:40 PM UTC · Updated 5 hours ago · 3 min read

Quantum computers use qubits to process information in ways that are not possible with conventional computers. One of today’s leading approaches relies on superconducting circuits, but these are extremely sensitive to electromagnetic noise and stray electrical charges – similar to the static electricity that makes hair stick to a balloon. Even tiny disturbances can cause errors and scramble the quantum information being held, making it difficult to scale up quantum computers while keeping error rates under control.
In a study published in npj Quantum Information, researchers from Surrey’s Quantum Sciences Group propose a radically different type of quantum computing hardware based on superfluid helium-3 – an unusual form of liquid helium that can flow without friction. Named the Superfluid Helium Oscillator Quantum (SHOQ) device, the proposed qubit uses charge-neutral superfluid helium, which could make it naturally immune to some forms of electromagnetic noise.
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