Detected-jump-error-correcting quantum codes, quantum error designs, and quantum computation
Abstract
The recently introduced detected-jump-correcting quantum codes are capable of stabilizing qubit systems against spontaneous decay processes arising from couplings to statistically independent reservoirs. These embedded quantum codes exploit classical information about which qubit has emitted spontaneously and correspond to an active error-correcting code embedded in a passive error-correcting code. The construction of a family of one-detected-jump-error-correcting quantum codes is shown and the optimal redundancy, encoding, and recovery as well as general properties of detected-jump-error-correcting quantum codes are discussed. By the use of design theory, multiple-jump-error-correcting quantum codes can be constructed. The performance of one-jump-error-correcting quantum codes under nonideal conditions is studied numerically by simulating a quantum memory and Grover’s algorithm.
Más información
Título de la Revista: | PHYSICAL REVIEW A |
Volumen: | 68 |
Editorial: | AMER PHYSICAL SOC |
Fecha de publicación: | 2003 |
Página de inicio: | 012316-1 |
Página final: | 012316-10 |
Notas: | ISI |