Fault-tolerant operation of a logical qubit in a diamond quantum processor
arXiv:2108.01646 · doi:10.1038/s41586-022-04819-6
Abstract
Solid-state spin qubits are a promising platform for quantum computation and quantum networks. Recent experiments have demonstrated high-quality control over multi-qubit systems, elementary quantum algorithms and non-fault-tolerant error correction. Large-scale systems will require using error-corrected logical qubits that are operated fault-tolerantly, so that reliable computation is possible despite noisy operations. Overcoming imperfections in this way remains a major outstanding challenge for quantum science. Here, we demonstrate fault-tolerant operations on a logical qubit using spin qubits in diamond. Our approach is based on the 5-qubit code with a recently discovered flag protocol that enables fault-tolerance using a total of seven qubits. We encode the logical qubit using a novel protocol based on repeated multi-qubit measurements and show that it outperforms non-fault-tolerant encoding schemes. We then fault-tolerantly manipulate the logical qubit through a complete set of single-qubit Clifford gates. Finally, we demonstrate flagged stabilizer measurements with real-time processing of the outcomes. Such measurements are a primitive for fault-tolerant quantum error correction. While future improvements in fidelity and the number of qubits will be required, our realization of fault-tolerant protocols on the logical-qubit level is a key step towards large-scale quantum information processing based on solid-state spins.
References in corpus (14)
- High-fidelity projective readout of a solid-state spin quantum register
- Realizing Repeated Quantum Error Correction in a Distance-Three Surface Code
- Realization of a multi-node quantum network of remote solid-state qubits
- Computing with spin qubits at the surface code error threshold
- Experimental Quantum Computations on a Topologically Encoded Qubit
- Decoherence-protected quantum gates for a hybrid solid-state spin register
- Exponential suppression of bit or phase flip errors with repetitive error correction
- Realization of an Error-Correcting Surface Code with Superconducting Qubits
- Demonstration of fault-tolerant universal quantum gate operations
- Precision tomography of a three-qubit donor quantum processor in silicon
- Experimental demonstration of fault-tolerant state preparation with superconducting qubits
- Topological quantum computing with a very noisy network and local error rates approaching one percent
- Observation of a many-body-localized discrete time crystal with a programmable spin-based quantum simulator
- Logical-qubit operations in an error-detecting surface code
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- Diamond Integrated Quantum Photonics: A Review
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- First-principles computational methods for quantum defects in two-dimensional materials: A perspective
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