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FAQ: D-Wave's Breakthrough in Scalable On-Chip Cryogenic Control for Gate-Model Quantum Computing

By NewsRamp Editorial Team

TL;DR

D-Wave's breakthrough reduces wiring complexity, giving companies an edge in developing scalable quantum computers for solving complex computational problems faster.

D-Wave applied its annealing quantum control technology to gate-model systems, using multiplexed converters to manage qubits with minimal wiring while maintaining fidelity.

This advancement accelerates practical quantum computing, potentially solving global challenges in optimization and AI to create a more efficient and innovative future.

D-Wave demonstrated an industry-first by controlling quantum bits with just 200 wires, a feat that could revolutionize how we process information.

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FAQ: D-Wave's Breakthrough in Scalable On-Chip Cryogenic Control for Gate-Model Quantum Computing

D-Wave announced the successful demonstration of scalable on-chip cryogenic control of qubits for gate-model quantum computing, an industry-first milestone that reduces wiring complexity while maintaining qubit fidelity.

This advancement moves the industry closer to commercially viable gate-model quantum computers by significantly reducing the wiring required to control large numbers of qubits without degrading their performance.

The technology uses multiplexed digital-to-analog converters to control tens of thousands of qubits and couplers with just 200 bias wires, originally developed for D-Wave's annealing quantum processing units and now applied to gate-model architectures.

D-Wave is the world's first and only dual-platform quantum computing company, building and delivering both annealing and gate-model quantum computing technology to address customers' complex computational problems.

The technology reduces gate-model wiring complexity while maintaining qubit fidelity, enabling the development of large-scale, practical gate-model quantum processing units.

This validates that the on-chip cryogenic control technology D-Wave developed for its commercial annealing quantum processing units can also be successfully applied to its gate-model architectures.

The full press release is available at https://ibn.fm/q6JgM, and more information about D-Wave's quantum computing systems and services can be found at www.dwavequantum.com.

D-Wave's customers apply their technology to address use cases spanning optimization, artificial intelligence, research, and more, with over 200 million problems submitted to their quantum systems to date.

D-Wave's quantum computers can be deployed on-premises or accessed through their quantum cloud service, which offers 99.9% availability and uptime.

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NewsRamp Editorial Team

NewsRamp Editorial Team

@newsramp

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