• DocumentCode
    2535233
  • Title

    A quantum logic array microarchitecture: scalable quantum data movement and computation

  • Author

    Metodi, Tzvetan S. ; Thaker, Darshan D. ; Cross, Andrew W. ; Chong, Frederic T. ; Chuang, Isaac L.

  • Author_Institution
    California Univ., Davis, CA, USA
  • fYear
    2005
  • fDate
    12-16 Nov. 2005
  • Abstract
    Recent experimental advances have demonstrated technologies capable of supporting scalable quantum computation. A critical next step is how to put those technologies together into a scalable, fault-tolerant system that is also feasible. We propose a quantum logic array (QLA) microarchitecture that forms the foundation of such a system. The QLA focuses on the communication resources necessary to efficiently support fault-tolerant computations. We leverage the extensive groundwork in quantum error correction theory and provide analysis that shows that our system is both asymptotically and empirically fault tolerant. Specifically, we use the QLA to implement a hierarchical, array-based design and a logarithmic expense quantum-teleportation communication protocol. Our goal is to overcome the primary scalability challenges of reliability, communication, and quantum resource distribution that plague current proposals for large-scale quantum computing. Our work complements recent work by Balenseifer et al. (2005), which studies the software tool chain necessary to simplify development of quantum applications; here we focus on modeling a full-scale optimized microarchitecture for scalable computing.
  • Keywords
    error correction; fault tolerant computing; logic arrays; protocols; quantum gates; fault-tolerant computations; fault-tolerant system; quantum computing; quantum error correction theory; quantum logic array microarchitecture; quantum resource distribution; quantum-teleportation communication protocol; scalable quantum data computation; scalable quantum data movement; software tool chain; Error correction; Fault tolerance; Fault tolerant systems; Logic arrays; Microarchitecture; Protocols; Quantum computing; Quantum mechanics; Resource management; Scalability;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microarchitecture, 2005. MICRO-38. Proceedings. 38th Annual IEEE/ACM International Symposium on
  • Print_ISBN
    0-7695-2440-0
  • Type

    conf

  • DOI
    10.1109/MICRO.2005.9
  • Filename
    1540969