LDPC-cat codes for low-overhead quantum computing in 2D

被引:2
|
作者
Ruiz, Diego [1 ,2 ]
Guillaud, Jeremie [1 ]
Leverrier, Anthony [3 ]
Mirrahimi, Mazyar [2 ]
Vuillot, Christophe [4 ]
机构
[1] Alice & Bob, 49 Bd Gen Martial Valin, F-75015 Paris, France
[2] Univ PSL, Lab Phys, Ecole Normale Super, Ctr Automat & Syst,Mines Paris,Inria, Paris, France
[3] Inria Paris, 48 Rue Barrault, F-75013 Paris, France
[4] Univ Lorraine, CNRS, Inria, LORIA, F-54000 Nancy, France
关键词
COMPUTATION;
D O I
10.1038/s41467-025-56298-8
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The main obstacle to large scale quantum computing are the errors present in every physical qubit realization. Correcting these errors requires a large number of additional qubits. Two main avenues to reduce this overhead are (i) low-density parity check (LDPC) codes requiring very few additional qubits to correct errors (ii) cat qubits where bit-flip errors are exponentially suppressed by design. In this work, we combine both approaches to obtain an extremely low overhead architecture. Assuming a physical phase-flip error probability & varepsilon; approximate to 0.1% per qubit and operation, one hundred logical qubits can be implemented on a 758 cat qubit chip, with a total logical error probability per cycle and per logical qubit & varepsilon;L <= 10-8. Our architecture also features two major advantages. First, the hardware implementation of the code can be realised with short-range qubit interactions in 2D and low-weight stabilizers, under constraints similar to those of the popular surface code architecture. Second, we demonstrate how to implement a fault-tolerant universal set of logical gates with an additional layer of routing cat qubits stacked on top of the LDPC layer, while maintaining the local connectivity. Furthermore, our architecture benefits from a high capacity of parallelization for these logical gates.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] High-threshold and low-overhead fault-tolerant quantum memory
    Bravyi, Sergey
    Cross, Andrew W.
    Gambetta, Jay M.
    Maslov, Dmitri
    Rall, Patrick
    Yoder, Theodore J.
    NATURE, 2024, 627 (8005)
  • [22] Low-overhead authentication method for reprogramming protocol based on rateless codes in wireless sensor networks
    Yang, Lina
    Li, Shining
    Zhang, Yu
    Liu, Gang
    2014 INTERNATIONAL WIRELESS COMMUNICATIONS AND MOBILE COMPUTING CONFERENCE (IWCMC), 2014, : 881 - 886
  • [23] Qubit placement to minimize communication overhead in 2D quantum architectures
    Shafaei, Alireza
    Saeedi, Mehdi
    Pedram, Massoud
    Proceedings of the Asia and South Pacific Design Automation Conference, ASP-DAC, 2014, : 495 - 500
  • [24] Qubit Placement to Minimize Communication Overhead in 2D Quantum Architectures
    Shafaei, Alireza
    Saeedi, Mehdi
    Pedram, Massoud
    2014 19TH ASIA AND SOUTH PACIFIC DESIGN AUTOMATION CONFERENCE (ASP-DAC), 2014, : 495 - 500
  • [25] Low-overhead Routing Algorithm for 3D Network-on-Chip
    Ben Ahmed, Akram
    Ben Abdallah, Abderazek
    2012 THIRD INTERNATIONAL CONFERENCE ON NETWORKING AND COMPUTING (ICNC 2012), 2012, : 23 - 32
  • [26] Advances in 2D heterostructures for quantum computing applications: A review
    Islam, Aminul
    Khan, Safiullah
    Mim, Juhi Jannat
    Akter, Mst. Fahmida
    Islam, Md. Shariful
    Oliullah, Shah
    Hossain, Nayem
    INORGANIC CHEMISTRY COMMUNICATIONS, 2025, 174
  • [27] Decoder with low resource overhead for multi-edge type LDPC codes based on cache
    Xie, Dong-Fu
    Wang, Lin
    Chen, Ping-Ping
    Yingyong Kexue Xuebao/Journal of Applied Sciences, 2010, 28 (06): : 633 - 638
  • [28] Low-Overhead Quantum Bus with Coupling Beyond the Nearest Neighbor via Mediated Effective Capacitance
    Yanay, Yariv
    Tahan, Charles
    PHYSICAL REVIEW APPLIED, 2023, 20 (02)
  • [29] Low-Overhead 3D Items Drawing Engine for Communicating Situated Knowledge
    Merckel, Loic
    Nishida, Toyoaki
    ACTIVE MEDIA TECHNOLOGY, PROCEEDINGS, 2009, 5820 : 31 - 41
  • [30] Low-Overhead Fault-Tolerant Quantum Error Correction with the Surface-GKP Code
    Noh, Kyungjoo
    Chamberland, Christopher
    Brandao, Fernando G. S. L.
    PRX QUANTUM, 2022, 3 (01):