New Journal of Physics (Jan 2016)

Universal quantum computation in waveguide QED using decoherence free subspaces

  • V Paulisch,
  • H J Kimble,
  • A González-Tudela

DOI
https://doi.org/10.1088/1367-2630/18/4/043041
Journal volume & issue
Vol. 18, no. 4
p. 043041

Abstract

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The interaction of quantum emitters with one-dimensional photon-like reservoirs induces strong and long-range dissipative couplings that give rise to the emergence of the so-called decoherence free subspaces (DFSs) which are decoupled from dissipation. When introducing weak perturbations on the emitters, e.g., driving, the strong collective dissipation enforces an effective coherent evolution within the DFS. In this work, we show explicitly how by introducing single-site resolved drivings, we can use the effective dynamics within the DFS to design a universal set of one and two-qubit gates within the DFS of an ensemble of two-level atom-like systems. Using Liouvillian perturbation theory we calculate the scaling with the relevant figures of merit of the systems, such as the Purcell factor and imperfect control of the drivings. Finally, we compare our results with previous proposals using atomic Λ systems in leaky cavities.

Keywords