NMR experimentai relization of seven-qubit D-J algorithm and controlled phase-shift gates with improved precision

被引:4
作者
WEI Daxiu LUO Jun SUN Xianping ZENG Xizhi YANG Xiaodong LIU Maili DING Shangwu State Key Laboratory of Magnetic Resonance and Atomic and MolecularPhysics Wuhan Institute of Physics and Mathematics Chinese Academy of Sciences Wuhan China [430071 ]
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中图分类号
O413 [量子论]; O482.532 [];
学科分类号
070201 [理论物理];
摘要
In this study, we report the experimental reali-zation of seven-qubit Deutsch-Jozsa (D-J) algorithm and controlled phase-shift gates with improved precision using liquid state nuclear magnetic resonance (NMR). Theexperimental results have shown that transformations Uf in the seven-qubit D-J algorithm have been implemented with different pulse sequences, and whether f is constant orbalanced is determined by using only a single function call(Uf). Furthermore, we propose an experimental method tomeasure and correct the error in the controlled phase-shift gate that is simple and feasible in experiments, and can have precise phase shifts. These may offer the possibility ofsurmounting the difficulties of low signal-to-noise ratio(SNR) in multi-qubit NMR quantum computers, morecomplicated experimental techniques, and the increase ofgate errors due to using a large number of imperfect selec-tive pulses. These are also applied to more complicated quantum algorithms with more qubits, such as quantumFourier transformation and Shor抯 algorithm.
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页码:239 / 243
页数:5
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