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共焦生物芯片扫描系统的光学信息量
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作者 王立强 陆祖康 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2008年第2期307-311,共5页
从光学信息量的表达式出发,研究了激光光斑尺寸和探测器小孔尺寸对共焦生物芯片扫描系统的扫描分辨率及信噪比的影响,并定量分析了在获取生物芯片图像过程中,共焦扫描系统的扫描分辨率和信噪比对光学信息量的制约关系.结果表明,为了获... 从光学信息量的表达式出发,研究了激光光斑尺寸和探测器小孔尺寸对共焦生物芯片扫描系统的扫描分辨率及信噪比的影响,并定量分析了在获取生物芯片图像过程中,共焦扫描系统的扫描分辨率和信噪比对光学信息量的制约关系.结果表明,为了获得尽可能大的光学信息量,必须保证激光光斑尺寸小于系统的扫描分辨率,并根据激光光斑尺寸合理地选择共焦扫描系统的扫描分辨率和探测器小孔尺寸.理论分析和实验结果表明,当扫描分辨率大于扫描激光光斑的1.2倍,且探测器小孔尺寸为扫描激光光斑的1.5- 2.0倍时,系统的光学信息量较大. 展开更多
关键词 共焦扫描 生物芯片 光学信息量 分辨率 信噪比
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Entanglement Preserving in Quantum Copying of Three-Qubit Entangled State
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作者 TONGZhao-Yang KUANGLe-Man 《Communications in Theoretical Physics》 SCIE CAS CSCD 2002年第5期541-546,共6页
We study the degree to which quantum entanglement survives when a three-qubit entangled state iscopied by using local and non-local processes, respectively, and investigate iterating quantum copyingfor the three-qubit... We study the degree to which quantum entanglement survives when a three-qubit entangled state iscopied by using local and non-local processes, respectively, and investigate iterating quantum copyingfor the three-qubitsystem. There may exist inter-three-qubit entanglement and inter-two-qubit entanglement for the three-qubit system.We show that both local and non-local copying processes degrade quantum entanglement in the three-particle systemdue to a residual correlation between the copied output and the copying machine. We also show that the inter-two-qubitentanglement is preserved better than the inter-three-qubit entanglement in the local cloning process. We find thatnon-local cloning is much more efficient than the local copying for broadcasting entanglement, and output state vianon-local cloning exhibits the fidelity better than local cloning. 展开更多
关键词 entangled states quantum entanglement quantum copying
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Optical parity gate and a wide range of entangled states generation 被引量:1
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作者 LIN Qing 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第4期30-39,共10页
Generating entangled states efficiently is a hot topic in the area of quantum information science.With the approach presented in this paper,a general parity gate could be realized and a wide range of entangled states,... Generating entangled states efficiently is a hot topic in the area of quantum information science.With the approach presented in this paper,a general parity gate could be realized and a wide range of entangled states,including GHZ state,W state,Dicke state,arbitrary graph state and locally maximally entanglable states,can be generated flexibly.The generation of GHZ state,W state,and Dicke state is probabilistic but heralded and the total success probability is unit.In addition,the arbitrary graph state and locally maximally entanglable states generation is deterministic,flexible,and highly efficient.Especially,with the"simultaneous"generation pattern,the complexity of the graph state generation and locally maximally entanglable states generation could be reduced greatly,providing a more efficient and feasible way to generate the entangled states. 展开更多
关键词 parity gate entangled states cross phase modulation c-path gate quantum information
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