Cite this article:
Yang Zhen-Biao, Su Wan-Jun. Engineering three-dimensional maximally entangled states for two modes in a bimodal cavityJ. Chin. Phys. B, 2007, 16(2): 435-440.
| Yang Zhen-Biao, Su Wan-Jun. Engineering three-dimensional maximally entangled states for two modes in a bimodal cavityJ. Chin. Phys. B, 2007, 16(2): 435-440. |
Engineering three-dimensional maximally entangled states for two modes in a bimodal cavity
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Abstract
An alternative scheme is proposed for engineering three-dimensional maximally entangled states for two modes of a superconducting microwave cavity. In this scheme, an appropriately prepared four-level atom is sent through a bimodal cavity. During its passing through the cavity, the atom is coupled resonantly with two cavity modes simultaneously and addressed by a classical microwave pulse tuned to the required transition. Then the atomic states are detected to collapse two modes onto a three-dimensional maximally entangled state. The scheme is different from the previous one in which two nonlocal cavities are used. A comparison between them is also made. -
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