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Overview
In 2013, Google kicked off its quantum computing journey and opened the Quantum AI Lab. The following year, the company achieved its first significant milestone and demonstrated "quantum supremacy" with its 53-qubit Sycamore processor. This achievement showed the world the capabilities of quantum computers and their potential to perform certain calculations in a fraction of the time classical supercomputers can.
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Observation of constructive interference at the edge of quantum ergodicity
The dynamics of quantum many-body systems is characterized by quantum observables that are reconstructed from correlation functions at separate points in space and time1-3. In dynamics with fast entanglement generation, however, quantum observables genera
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Quantum error correction below the surface code threshold
Quantum error correction1-4 provides a path to reach practical quantum computing by combining multiple physical qubits into a logical qubit, in which the logical error rate is suppressed exponentially as more qubits are added. However, this exponential su
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Our quantum computing journey
A useful, error-corrected quantum computer is within reach for humanity. There's still a lot of work to do, but we think we might be able to accomplish our goal within the decade. Learn more about what it will take.
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