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Quantum Computation with Nonlinear Optics

Quantum Computation with Nonlinear Optics
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摘要 We propose a scheme of quantum computation with nonlinear quantum optics. Polarization states of photons are used for qubits. Photons with different frequencies represent different qubits. Single qubit rotation operation is implemented through optical elements like the Faraday polarization rotator. Photons are separated into different optical paths, or merged into a single optical path using dichromatic mirrors. The controlled-NOT gate between two qubits is implemented by the proper combination of parametric up and down conversions. This scheme has the following features: (1) No auxiliary qubits are required in the controlled-NOT gate operation; (2) No measurement is required in the course of the computation; (3) It is resource efficient and conceptually simple.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2008年第1期107-110,共4页 理论物理通讯(英文版)
基金 The project supported by the National Fundamental Research Program under Grant No.2006CB921106 National Natural Science Foundation of China under Grant Nos.10325521 and 10390160
关键词 quantum computation nonlinear optics parametric up(down)-conversion polarization modulator 量子算法 非线性光学 参量转换 调制器
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