4.7 Article

Simulation of n-qubit quantum systems.: III.: Quantum operations

期刊

COMPUTER PHYSICS COMMUNICATIONS
卷 176, 期 9-10, 页码 617-633

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.cpc.2007.02.106

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quantum register; quantum operation; channel; decoherence

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During the last decade, several quantum information protocols, such as quantum key distribution, teleportation or quantum computation, have attracted a lot of interest. Despite the recent success and research efforts in quantum information processing, however, we are just at the beginning of understanding the role of entanglement and the behavior of quantum systems in noisy environments, i.e. for nonideal implementations. Therefore, in order to facilitate the investigation of entanglement and decoherence in n-qubit quantum registers, here we present a revised version of the FEYNMAN program for working with quantum operations and their associated (Jamiolkowski) dual states. Based on the implementation of several popular decoherence models, we provide tools especially for the quantitative analysis of quantum operations. Apart from the implementation of different noise models, the current program extension may help investigate the fragility of many quantum states, one of the main obstacles in realizing quantum information protocols today.

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