Implementation of the Deutsch-Jozsa algorithm with Josephson charge qubits
arXiv:quant-ph/0112135 · doi:10.1080/09500340110114902
Abstract
We investigate the realization of a simple solid-state quantum computer by implementing the Deutsch-Jozsa algorithm in a system of Josephson charge qubits. Starting from a procedure to carry out the one-qubit Deutsch-Jozsa algorithm we show how the N-qubit version of the Bernstein-Vazirani algorithm can be realized. For the implementation of the three-qubit Deutsch-Jozsa algorithm we study in detail a setup which allows to produce entangled states.
accepted for publication in Journal of Modern Optics
Cited by in corpus (5)
- Measurement-based Synthesis of multi-qubit Entangled States in Superconducting Cavity QED
- Double-slit implementation of minimal Deutsch algorithm
- Implementation of Grover search algorithm with Josephson charge qubits
- Dynamics of Bloch vectors and the channel capacity of a non identical charged qubit pair
- Cavity QED implementation of the multi-qubit refined Deutsch-Jozsa algorithm