2D Compass Codes
The compass model on a square lattice provides a natural template for building subsystem stabilizer codes. The surface code and the Bacon-Shor code represent two extremes of possible codes depending on how many gauge qubits are fixed. We explore threshold behavior in this broad class of local codes...
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| Vydané v: | Physical review. X Ročník 9; číslo 2; s. 021041 |
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| Hlavní autori: | , , , , |
| Médium: | Journal Article |
| Jazyk: | English |
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American Physical Society
29.05.2019
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| ISSN: | 2160-3308, 2160-3308 |
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| Abstract | The compass model on a square lattice provides a natural template for building subsystem stabilizer codes. The surface code and the Bacon-Shor code represent two extremes of possible codes depending on how many gauge qubits are fixed. We explore threshold behavior in this broad class of local codes by trading locality for asymmetry and gauge degrees of freedom for stabilizer syndrome information. We analyze these codes with asymmetric and spatially inhomogeneous Pauli noise in the code capacity and phenomenological models. In these idealized settings, we observe considerably higher thresholds against asymmetric noise. At the circuit level, these codes inherit the bare-ancilla fault tolerance of the Bacon-Shor code. |
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| AbstractList | The compass model on a square lattice provides a natural template for building subsystem stabilizer codes. The surface code and the Bacon-Shor code represent two extremes of possible codes depending on how many gauge qubits are fixed. We explore threshold behavior in this broad class of local codes by trading locality for asymmetry and gauge degrees of freedom for stabilizer syndrome information. We analyze these codes with asymmetric and spatially inhomogeneous Pauli noise in the code capacity and phenomenological models. In these idealized settings, we observe considerably higher thresholds against asymmetric noise. At the circuit level, these codes inherit the bare-ancilla fault tolerance of the Bacon-Shor code. |
| ArticleNumber | 021041 |
| Author | Wu, Yukai Brown, Kenneth R. Li, Muyuan Newman, Michael Miller, Daniel |
| Author_xml | – sequence: 1 givenname: Muyuan surname: Li fullname: Li, Muyuan – sequence: 2 givenname: Daniel surname: Miller fullname: Miller, Daniel – sequence: 3 givenname: Michael surname: Newman fullname: Newman, Michael – sequence: 4 givenname: Yukai surname: Wu fullname: Wu, Yukai – sequence: 5 givenname: Kenneth R. surname: Brown fullname: Brown, Kenneth R. |
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| Snippet | The compass model on a square lattice provides a natural template for building subsystem stabilizer codes. The surface code and the Bacon-Shor code represent... |
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| SubjectTerms | Asymmetry Circuits Codes Couplings Error correcting codes Error correction Fault tolerance Noise Quantum chemistry Quantum computing Quantum phenomena Qubits (quantum computing) Robustness Subsystems Thresholds Two dimensional models |
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