Error correction is essential to fault-tolerant gate-model quantum computing, and it starts with knowing when and where errors occur. Our unique superconducting dual-rail qubit architecture embeds error detection directly at the hardware level, cutting the qubit overhead needed for error correction.
In this webinar, we’ll cover why an error-aware approach could offer a fast, efficient, and achievable path to fault-tolerant quantum computing, and how it enables a new class of quantum algorithms.
We'll also preview the gate-model simulator coming to the Leap™ quantum cloud platform later this year, where you'll be able to prototype and validate quantum algorithms and applications before running them on a quantum processing unit.
Join us to learn:
- Why error detection matters and how it could accelerate the path to fault-tolerant quantum computing
- How D-Wave's dual-rail qubit architecture embeds error detection directly at the hardware level
- How error-aware programming tools enable a new class of quantum algorithms
- How to get started exploring error-aware programming with D-Wave’s gate-model simulator coming to the Leap™ platform later this year, will let you start exploring
Speakers:
- Dr. Andrei Petrenko, VP Gate Product Management
- Murray Thom, VP Quantum Technology Evangelism