Entanglement Manipulation for a Two-Mode Squeezed Vacuum State
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Abstract
By numerically analysing the entropy of entanglement of the output state from a Mach--Zehnder interferometer for the two-mode squeezed vacuum state input, it is found that if the internal phase shift of the interferometer is adjusted to the value of 0 or π, the entangling characteristic of the input state is efficiently preserved at the output. If the internal phase shift is tuned to the value of π, the two-mode squeezed vacuum state is completely disentangled at the output of the setup. If the internal phase shift deviates from the above values, the input state is degraded into a partially entangled output state. Based on these results, a method for optically realizing the entanglement preservation, entanglement degradation, and disentanglement via the interferometer is obtained.
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Cite this article:
ZHOU Qing-Ping, FANG Mao-Fa, LIU Xiao-Juan, CHEN Xiao-Mei, WU Qin. Entanglement Manipulation for a Two-Mode Squeezed Vacuum State[J]. Chin. Phys. Lett., 2004, 21(9): 1692-1694.
ZHOU Qing-Ping, FANG Mao-Fa, LIU Xiao-Juan, CHEN Xiao-Mei, WU Qin. Entanglement Manipulation for a Two-Mode Squeezed Vacuum State[J]. Chin. Phys. Lett., 2004, 21(9): 1692-1694.
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ZHOU Qing-Ping, FANG Mao-Fa, LIU Xiao-Juan, CHEN Xiao-Mei, WU Qin. Entanglement Manipulation for a Two-Mode Squeezed Vacuum State[J]. Chin. Phys. Lett., 2004, 21(9): 1692-1694.
ZHOU Qing-Ping, FANG Mao-Fa, LIU Xiao-Juan, CHEN Xiao-Mei, WU Qin. Entanglement Manipulation for a Two-Mode Squeezed Vacuum State[J]. Chin. Phys. Lett., 2004, 21(9): 1692-1694.
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