Cite this article:
Mu Qing-Xia. Control of sudden transition between classical and quantum correlations of two strongly driven atoms in dissipative cavitiesJ. Chin. Phys. B, 2013, 22(8): 080305.
| Mu Qing-Xia. Control of sudden transition between classical and quantum correlations of two strongly driven atoms in dissipative cavitiesJ. Chin. Phys. B, 2013, 22(8): 080305. |
Control of sudden transition between classical and quantum correlations of two strongly driven atoms in dissipative cavities
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Abstract
We investigate analytically the dynamics of classical and quantum correlations between two strongly driven atoms, each of which is trapped inside a dissipative cavity. It is found that there exists a finite time interval during which the quantum discord initially prepared in the X-type states is not destroyed by the decay of the cavities. The sudden transition between classical correlation and quantum discord is sensitive to the initial-state parameter, the cavity decay rate, and the cavity mode-driving field detuning. Interestingly, we show that the transition time can be prolonged significantly by increasing the degree of the detuning. -
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