Correcting detection error in quantum computation and state engineering through data processing
ORAL
Abstract
Quantum error correction in general is experimentally challenging as it requires significant expansion of the size of quantum circuits and accurate performance of quantum gates to fulfill the error threshold requirement. Here we propose a method much simpler for experimental implementation to correct arbitrary detection errors. The method is based on processing of data from repetitive experiments and can correct detection error of any magnitude, as long as the error magnitude is calibrated. The method is illustrated with its application to detection of multi-partite entanglement from quantum state engineering.
*This work was supported by the NBRPC(973 Program) 2011CBA00300 (2011CBA00302), the IARPA MUSIQC program, the DARPA OLE program, the ARO and the AFOSR MURI program.
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