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Non-adiabatic holonomic quantum computation in linear system-bath coupling
Journal article   Peer reviewed

Non-adiabatic holonomic quantum computation in linear system-bath coupling

Chunfang Sun, Gangcheng Wang, Chunfeng Wu, Haodi Liu, Xun-Li Feng, Jing-Ling Chen and Kang Xue
Scientific reports, Vol.6(1), pp.20292-20292
05/02/2016
PMID: 26846444

Abstract

Multidisciplinary Sciences Science & Technology Science & Technology - Other Topics
Non-adiabatic holonomic quantum computation in decoherence-free subspaces protects quantum information from control imprecisions and decoherence. For the non-collective decoherence that each qubit has its own bath, we show the implementations of two non-commutable holonomic single-qubit gates and one holonomic nontrivial two-qubit gate that compose a universal set of non-adiabatic holonomic quantum gates in decoherence-free-subspaces of the decoupling group, with an encoding rate of N-2/N. The proposed scheme is robust against control imprecisions and the non-collective decoherence, and its non-adiabatic property ensures less operation time. We demonstrate that our proposed scheme can be realized by utilizing only two-qubit interactions rather than many-qubit interactions. Our results reduce the complexity of practical implementation of holonomic quantum computation in experiments. We also discuss the physical implementation of our scheme in coupled microcavities.
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https://doi.org/10.1038/srep20292View
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