Google · Google AI Blog
Building superconducting and neutral atom quantum computers
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Google Quantum AI is expanding its quantum computing research to include neutral atom quantum computing, which uses individual atoms as qubits, alongside superconducting.
Key facts
- Google Quantum AI is expanding its quantum computing research to include neutral atom quantum computing, which uses individual atoms as qubits, alongside superconducting
- At Google Quantum AI, their mission has always been clear: build quantum computing for otherwise unsolvable problems
- They make up for their slower cycle times — measured in milliseconds from JILA and their physics department to initiatives such as the CUbit Quantum Initiative and the Colorado Quantum Incubator
- Today, they are excited to share that Google Quantum AI is expanding their quantum computing effort to include neutral atom quantum computing, which uses individual atoms as qubits
Summary
At Google Quantum AI, their mission has always been clear: build quantum computing for otherwise unsolvable problems. Today, they are excited to share that Google Quantum AI is expanding their quantum computing effort to include neutral atom quantum computing, which uses individual atoms as qubits. Google will accelerate their timeline to near-term milestones and broaden their impact by exploiting the complementary strengths of two modalities. They make up for their slower cycle times — measured in milliseconds from JILA and their physics department to initiatives such as the CUbit Quantum Initiative and the Colorado Quantum Incubator. This partnership strengthens Boulder’s nationally recognized quantum landscape, supported by major federal investments including the NSF Q‑SEnSE Institute, the National Quantum Nanofab and the U.S. EDA Quantum TechHub.
The team are confident in their ability to solve the remaining problems in physics and engineering towards large-scale quantum computing, and they are humbled and excited about the scale of the challenge.