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D-Wave Launches Gate-Model Simulator Beta Program, Advancing Error-Aware Programming Capabilities

  • 2 min read
  • D-Wave Quantum Inc. NASDAQ: QBTS

D-Wave Quantum Inc. (NASDAQ: QBTS) (“D-Wave” or the “Company”), the only dual-platform quantum computing company providing both annealing and gate-model systems, software and services, recently launched its gate-model quantum computing simulator beta program, marking an important milestone in D-Wave’s gate-model development roadmap.

The beta program offers select customers early access to the simulator in advance of its general availability to experiment with error-aware programming and develop quantum applications in preparation for D-Wave’s forthcoming gate-model systems. The simulator is built around D-Wave’s dual-rail superconducting gate-model technology, which is designed to harness error detection to deliver efficient quantum error correction with significantly lower hardware overhead as systems scale. Participants in the simulator beta program include commercial and research organizations: BBVA, FirstQFM, Florida Atlantic University (FAU) and the Julich Supercomputing Centre (JSC).

To view the full press release, visit https://ibn.fm/Dy07z

About D-Wave Quantum Inc.

D-Wave is a leader in the development and delivery of quantum computing systems, software, and services. It is the world’s first commercial supplier of quantum computers, and the first and only to offer dual-platform quantum computing products and services, spanning both annealing and gate-model quantum computing technologies. D-Wave’s mission is to help customers realize the value of quantum today through enterprise-grade systems available on-premises and via its LeapTM quantum cloud service, which offers 99.9% availability and uptime. More than 100 organizations across commercial, government and research sectors trust D-Wave to address complex computational challenges using quantum computing. Learn more about realizing the value of quantum computing today and how D-Wave is shaping the quantum-driven industrial and societal advancements of tomorrow: https://www.dwavequantum.com.

In brief

D-Wave Quantum Inc. says it has started a beta program for its gate-model quantum computing simulator, giving selected customers access before general availability. The company says participants can test error-aware programming and prepare quantum applications for its planned gate-model systems. The simulator uses D-Wave’s dual-rail superconducting gate-model technology, which the company says is designed to use error detection to support quantum error correction with lower hardware overhead as systems grow. Participants named in the announcement are BBVA, FirstQFM, Florida Atlantic University and the Julich Supercomputing Centre. D-Wave describes the beta launch as a step in its gate-model development roadmap.

Key takeaways

  • D-Wave has opened beta access to its gate-model quantum computing simulator for selected customers.
  • Participants can explore error-aware programming and develop applications ahead of the company’s forthcoming gate-model systems.
  • The named participants include BBVA, FirstQFM, Florida Atlantic University and the Julich Supercomputing Centre.
  • D-Wave says the simulator is based on its dual-rail superconducting gate-model technology.

Forward-Looking Statements

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Questions around this news

  1. What does D-Wave’s gate-model simulator beta program offer?

    The program gives select customers early access to a simulator before its general availability. Participants can experiment with error-aware programming and work on quantum applications ahead of the company’s planned gate-model systems. The release describes the simulator as built around D-Wave’s dual-rail superconducting gate-model technology.

  2. What is error-aware programming in quantum computing?

    Error-aware programming takes account of the fact that quantum operations can be affected by noise and other errors. Developers may design algorithms and workflows to detect, manage or reduce those effects. The release says beta participants can experiment with this approach using the simulator, but does not detail particular programming methods or tools.

  3. How do gate-model and annealing quantum computing differ?

    Gate-model quantum computers process information through sequences of quantum logic operations, somewhat analogous to instructions in conventional computing. Quantum annealing systems instead evolve a physical system toward a low-energy state that can represent a solution to an optimization problem. These approaches use different methods and are suited to different kinds of computational tasks.

SEC filings

Earlier from D-Wave Quantum Inc.

  1. D-Wave Quantum (NASDAQ: QBTS) Finalizes Definitive Agreement with U.S. Department of Commerce for up to $100M to Accelerate U.S. Leadership in Quantum Computing
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