Quantum Circuit Designs for Gate Model Quantum Computers

ORAL

Abstract

We define a method to design quantum circuits for gate model quantum computers. Our Quantum Triple Annealing Minimization (QTAM) algorithm provides the quantum circuit minimization on the physical layout (circuit depths and area), the superconducting wire length minimization of the quantum circuit, and the minimization of the input quantum states and the measurements. The QTAM method minimizes the Hamiltonian operator via the maximization of an objective function. We define a multilayer structure for quantum circuit computations using the hardware restrictions of superconducting quantum computers. The results can be straightforwardly applied in experimental superconducting quantum computers, and gate model quantum computations.

*This work was partially supported by the GOP-1.1.1-11-2012-0092 project sponsored by the EU and European Structural Fund, by the Hungarian Scientific Research Fund - OTKA K-112125, and by the COST Action MP1006.

Presenters

  • Laszlo Gyongyosi

    • University of Southampton

Authors

  • Laszlo Gyongyosi

    • University of Southampton
  • Sandor Imre

    • Budapest Univ of Tech