• Title of article

    Toward a scalable, silicon-based quantum computing architecture

  • Author/Authors

    D.، Copsey, نويسنده , , M.، Oskin, نويسنده , , F.، Impens, نويسنده , , T.، Metodiev, نويسنده , , A.، Cross, نويسنده , , F.T.، Chong, نويسنده , , I.L.، Chuang, نويسنده , , J.، Kubiatowicz, نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2003
  • Pages
    -1551
  • From page
    1552
  • To page
    0
  • Abstract
    Advances in quantum devices have brought scalable quantum computation closer to reality. We focus on the system-level issues of how quantum devices can be brought together to form a scalable architecture. In particular, we examine promising silicon-based proposals. We discover that communication of quantum data is a critical resource in such proposals. We find that traditional techniques using quantum SWAP gates are exponentially expensive as distances increase and propose quantum teleportation as a means to communicate data over longer distances on a chip. Furthermore, we find that realistic quantum error-correction circuits use a recursive structure that benefits from using teleportation for longdistance communication. We identify a set of important architectural building blocks necessary for constructing scalable communication and computation. Finally, we explore an actual layout scheme for recursive error correction, and demonstrate the exponential growth in communication costs with levels of recursion, and that teleportation limits those costs.
  • Keywords
    OBESITY , Genotype , Energy
  • Journal title
    IEEE Journal of Selected Topics in Quantum Electronics
  • Serial Year
    2003
  • Journal title
    IEEE Journal of Selected Topics in Quantum Electronics
  • Record number

    97140