Adaptive syndrome measurements for Shor-style error correction

Author:

Tansuwannont Theerapat12ORCID,Pato Balint12ORCID,Brown Kenneth R.1234ORCID

Affiliation:

1. Duke Quantum Center, Duke University, Durham, NC 27701, USA

2. Department of Electrical and Computer Engineering, Duke University, Durham, NC 27708, USA

3. Department of Physics, Duke University, Durham, NC 27708, USA

4. Department of Chemistry, Duke University, Durham, NC 27708, USA

Abstract

The Shor fault-tolerant error correction (FTEC) scheme uses transversal gates and ancilla qubits prepared in the cat state in syndrome extraction circuits to prevent propagation of errors caused by gate faults. For a stabilizer code of distance d that can correct up to t=⌊(d−1)/2⌋ errors, the traditional Shor scheme handles ancilla preparation and measurement faults by performing syndrome measurements until the syndromes are repeated t+1 times in a row; in the worst-case scenario, (t+1)2 rounds of measurements are required. In this work, we improve the Shor FTEC scheme using an adaptive syndrome measurement technique. The syndrome for error correction is determined based on information from the differences of syndromes obtained from consecutive rounds. Our protocols that satisfy the strong and the weak FTEC conditions require no more than (t+3)2/4−1 rounds and (t+3)2/4−2 rounds, respectively, and are applicable to any stabilizer code. Our simulations of FTEC protocols with the adaptive schemes on hexagonal color codes of small distances verify that our protocols preserve the code distance, can increase the pseudothreshold, and can decrease the average number of rounds compared to the traditional Shor scheme. We also find that for the code of distance d, our FTEC protocols with the adaptive schemes require no more than d rounds on average.

Funder

Office of the Director of National Intelligence - Intelligence Advanced Research Projects Activity

Army Research Office

National Science Foundation

Publisher

Verein zur Forderung des Open Access Publizierens in den Quantenwissenschaften

Subject

Physics and Astronomy (miscellaneous),Atomic and Molecular Physics, and Optics

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