\begin{document}$I({\hat S_1},{\hat S_2})$\end{document} and \begin{document}$I({\hat S_2},{\hat S_3})$\end{document}, is analyzed in 100 MHz operation bandwidth of Josephson mixer. The relation between inseparability I and squeezing degree r and between inseparability I and amplitude ratio Q are analyzed respectively. The results show that \begin{document}$I({\hat S_1},{\hat S_2})$\end{document} is sensitive to the variation of Q, while \begin{document}$I({\hat S_2},{\hat S_3})$\end{document} is sensitive to the change of r. The physical reasons for these results are explored and discussed. Apart from these, \begin{document}$I({\hat S_1},{\hat S_2})$\end{document} remains its value above 1 under the condition in this paper, but on the contrary, \begin{document}$I({\hat S_2},{\hat S_3})$\end{document} keeps its value well below 1. It proves that \begin{document}${\hat S_2}$\end{document} and \begin{document}${\hat S_3}$\end{document} of Stokes vectors are inseparable from each other, thus output signals \begin{document}${\hat E_a}$\end{document} and \begin{document}${\hat E_b}$\end{document} of our scheme exhibit bipartite entanglement. The best entanglement appears nearly at about 70 MHz, at this point the minimum \begin{document}$I({\hat S_2},{\hat S_3})$\end{document} value is 0.25."> - 必威体育下载

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    Luo Jun-Wen, Wu De-Wei, Li Xiang, Zhu Hao-Nan, Wei Tian-Li
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    • Abstract views:5918
    • PDF Downloads:52
    • Cited By:0
    Publishing process
    • Received Date:26 October 2018
    • Accepted Date:04 December 2018
    • Available Online:01 March 2019
    • Published Online:20 March 2019

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