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TECHNIQUES FOR PERFORMING ENTANGLING GATES ON LOGICAL QUBITS AND RELATED SYSTEMS AND METHODS

发明专利审中
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19权利要求 · 2 独立
§ Ⅰ

卷宗概要

发明人

Robert J. Schoelkopf, III; Takahiro Tsunoda; James Teoh; Benjamin Chapman; Stijn de Graaf; William Kalfus; Jacob Curtis; Neel Thakur

IPC 分类

G6N 10/40G1R 33/35

CPC 分类

G6N10/40G1R33/354

Techniques are described for performing two-qubit gates on logical qubits. The two-qubit gates may be performed in a manner that is fault tolerant and/or that produces an indication of whether or not an error occurred during the gate. The robustness of the described techniques against errors is provided at the hardware level by engineering a system in which an ancilla qubit acts as flag states for certain errors. As such, manipulating the state of the system to counteract an error may not be necessary; rather, when errors occur the result of a gate may be filtered out, or performed again. In other cases, the error state may simply be recorded as an indication of quality of the state of the system. The techniques for performing two-qubit gates described herein may also be compatible with different bosonic encodings of logical qubits, of which illustrative examples are described.

原文(中文)

Techniques are described for performing two-qubit gates on logical qubits. The two-qubit gates may be performed in a manner that is fault tolerant and/or that produces an indication of whether or not an error occurred during the gate. The robustness of the described techniques against errors is provided at the hardware level by engineering a system in which an ancilla qubit acts as flag states for certain errors. As such, manipulating the state of the system to counteract an error may not be necessary; rather, when errors occur the result of a gate may be filtered out, or performed again. In other cases, the error state may simply be recorded as an indication of quality of the state of the system. The techniques for performing two-qubit gates described herein may also be compatible with different bosonic encodings of logical qubits, of which illustrative examples are described.