Implementation of Quantum Logic Gates by Nuclear Magnetic Resonance Spectroscopy
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Abstract
Using nuclear magnetic resonance techniques with a solution of cytosine molecules, we show an implementation of certain quantum logic gates (including NOT gate, square-root of NOT gate and controlled-NOT gate), which have central importance in quantum computing. In addition, experimental results show that nuclear magnetic resonance spectroscopy can efficiently measure the result of quantum computing without attendant wave-function collapse.
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DU Jiang-Feng, WU Ji-Hui, SHI Ming-Jun, HAN Liang, ZHOU Xian-Yi, YE Bang-Jiao, WENG Hui-Ming, HAN Rong-Dian. Implementation of Quantum Logic Gates by Nuclear Magnetic Resonance Spectroscopy[J]. Chin. Phys. Lett., 2000, 17(1): 64-66.
DU Jiang-Feng, WU Ji-Hui, SHI Ming-Jun, HAN Liang, ZHOU Xian-Yi, YE Bang-Jiao, WENG Hui-Ming, HAN Rong-Dian. Implementation of Quantum Logic Gates by Nuclear Magnetic Resonance Spectroscopy[J]. Chin. Phys. Lett., 2000, 17(1): 64-66.
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DU Jiang-Feng, WU Ji-Hui, SHI Ming-Jun, HAN Liang, ZHOU Xian-Yi, YE Bang-Jiao, WENG Hui-Ming, HAN Rong-Dian. Implementation of Quantum Logic Gates by Nuclear Magnetic Resonance Spectroscopy[J]. Chin. Phys. Lett., 2000, 17(1): 64-66.
DU Jiang-Feng, WU Ji-Hui, SHI Ming-Jun, HAN Liang, ZHOU Xian-Yi, YE Bang-Jiao, WENG Hui-Ming, HAN Rong-Dian. Implementation of Quantum Logic Gates by Nuclear Magnetic Resonance Spectroscopy[J]. Chin. Phys. Lett., 2000, 17(1): 64-66.
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