Overcoming leakage in quantum error correction
-
Published:2023-10-05
Issue:12
Volume:19
Page:1780-1786
-
ISSN:1745-2473
-
Container-title:Nature Physics
-
language:en
-
Short-container-title:Nat. Phys.
Author:
Miao Kevin C.ORCID, McEwen MattORCID, Atalaya Juan, Kafri Dvir, Pryadko Leonid P.ORCID, Bengtsson AndreasORCID, Opremcak Alex, Satzinger Kevin J.ORCID, Chen Zijun, Klimov Paul V., Quintana Chris, Acharya Rajeev, Anderson Kyle, Ansmann Markus, Arute Frank, Arya Kunal, Asfaw Abraham, Bardin Joseph C.ORCID, Bourassa AlexandreORCID, Bovaird Jenna, Brill Leon, Buckley Bob B., Buell David A., Burger Tim, Burkett BrianORCID, Bushnell Nicholas, Campero Juan, Chiaro Ben, Collins Roberto, Conner Paul, Crook Alexander L., Curtin BenORCID, Debroy Dripto M., Demura SeanORCID, Dunsworth Andrew, Erickson Catherine, Fatemi Reza, Ferreira Vinicius S., Burgos Leslie Flores, Forati Ebrahim, Fowler Austin G., Foxen BrooksORCID, Garcia Gonzalo, Giang William, Gidney Craig, Giustina Marissa, Gosula RajaORCID, Dau Alejandro Grajales, Gross Jonathan A.ORCID, Hamilton Michael C., Harrington Sean D.ORCID, Heu Paula, Hilton Jeremy, Hoffmann Markus R.ORCID, Hong SabrinaORCID, Huang Trent, Huff Ashley, Iveland Justin, Jeffrey Evan, Jiang ZhangORCID, Jones Cody, Kelly JulianORCID, Kim Seon, Kostritsa Fedor, Kreikebaum John Mark, Landhuis DavidORCID, Laptev Pavel, Laws Lily, Lee Kenny, Lester Brian J.ORCID, Lill Alexander T., Liu Wayne, Locharla Aditya, Lucero Erik, Martin Steven, Megrant AnthonyORCID, Mi XiaoORCID, Montazeri ShirinORCID, Morvan AlexisORCID, Naaman OferORCID, Neeley MatthewORCID, Neill CharlesORCID, Nersisyan Ani, Newman Michael, Ng Jiun HowORCID, Nguyen Anthony, Nguyen Murray, Potter Rebecca, Rocque Charles, Roushan PedramORCID, Sankaragomathi KannanORCID, Schurkus Henry F.ORCID, Schuster Christopher, Shearn Michael J., Shorter Aaron, Shutty NoahORCID, Shvarts Vladimir, Skruzny Jindra, Smith W. Clarke, Sterling George, Szalay Marco, Thor Douglas, Torres Alfredo, White Theodore, Woo Bryan W. K.ORCID, Yao Z. Jamie, Yeh PingORCID, Yoo Juhwan, Young Grayson, Zalcman AdamORCID, Zhu NingfengORCID, Zobrist Nicholas, Neven HartmutORCID, Smelyanskiy Vadim, Petukhov Andre, Korotkov Alexander N., Sank DanielORCID, Chen Yu
Abstract
AbstractThe leakage of quantum information out of the two computational states of a qubit into other energy states represents a major challenge for quantum error correction. During the operation of an error-corrected algorithm, leakage builds over time and spreads through multi-qubit interactions. This leads to correlated errors that degrade the exponential suppression of the logical error with scale, thus challenging the feasibility of quantum error correction as a path towards fault-tolerant quantum computation. Here, we demonstrate a distance-3 surface code and distance-21 bit-flip code on a quantum processor for which leakage is removed from all qubits in each cycle. This shortens the lifetime of leakage and curtails its ability to spread and induce correlated errors. We report a tenfold reduction in the steady-state leakage population of the data qubits encoding the logical state and an average leakage population of less than 1 × 10−3 throughout the entire device. Our leakage removal process efficiently returns the system back to the computational basis. Adding it to a code circuit would prevent leakage from inducing correlated error across cycles. With this demonstration that leakage can be contained, we have resolved a key challenge for practical quantum error correction at scale.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy
Reference42 articles.
1. Bravyi, S.B. & Kitaev, A.Y. Quantum codes on a lattice with boundary. Preprint at https://arxiv.org/abs/quant-ph/9811052 (1998). 2. Fowler, A. G., Mariantoni, M., Martinis, J. M. & Cleland, A. N. Surface codes: towards practical large-scale quantum computation. Phys. Rev. A 86, 032324 (2012). 3. Terhal, B. M. Quantum error correction for quantum memories. Rev. Mod. Phys. 87, 307–346 (2015). 4. Koch, J. et al. Charge-insensitive qubit design derived from the Cooper pair box. Phys. Rev. A 76, 042319 (2007). 5. Kjaergaard, M. et al. Superconducting qubits: current state of play. Annu. Rev. Condens. Matter Phys. 11, 369–395 (2020).
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|