Cite this article:
Tang Xu-Bing, Gao Fang, Wang Yao-Xiong, Kuang Sen, Shuang Feng. Non-Gaussian quantum states generation and robust quantum non-Gaussianity via squeezing fieldJ. Chin. Phys. B, 2015, 24(3): 034208.
| Tang Xu-Bing, Gao Fang, Wang Yao-Xiong, Kuang Sen, Shuang Feng. Non-Gaussian quantum states generation and robust quantum non-Gaussianity via squeezing fieldJ. Chin. Phys. B, 2015, 24(3): 034208. |
Non-Gaussian quantum states generation and robust quantum non-Gaussianity via squeezing field
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Abstract
Recent studies show that quantum non-Gaussian states or using non-Gaussian operations can improve entanglement distillation, quantum swapping, teleportation, and cloning. In this work, employing a strategy of non-Gaussian operations (namely subtracting and adding a single photon), we propose a scheme to generate non-Gaussian quantum states named single-photon-added and -subtracted coherent (SPASC) superposition states by implementing Bell measurements, and then investigate the corresponding nonclassical features. By squeezed the input field, we demonstrate that robustness of non- Gaussianity can be improved. Controllable phase space distribution offers the possibility to approximately generate a displaced coherent superposition states (DCSS). The fidelity can reach up to F≥0.98 and F ≥ 0.90 for size of amplitude z = 1.53 and 2.36, respectively. -
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