Quantum error correction with soft-pulse dynamically corrected gates with always-on qubit couplings on bipartite lattices

ORAL

Abstract

We suggest a scalable implementation of a universal set of high fidelity quantum gates on a bipartite lattice with always-on Ising couplings using dynamical decoupling (DD) sequences with second-order self-refocusing pulses. In addition to decoupling the unwanted parts of the inter-qubit interaction, the constructed gates also protect the qubits against low-frequency phase noise. This allows heterogeneous concatenation of DD and quantum error correction. We illustrate the technique by simulating the encoding/decoding and repeated ancilla based measurements for 4- and 5-qubit quantum error detecting/correcting codes on a spin chain and on a star graph.

*This research was supported in part by the U.S. Army Research O?ce under Grant No. W911NF-11-1-0027, and by the NSF under Grant No. 1018935

Authors

  • Amrit De

    • University of California - Riverside
  • Leonid Pryadko

    • University of California, Riverside
    • University of California - Riverside
    • University of Californa, Riverside