2011
DOI: 10.1007/s10773-011-0794-y
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Entanglement Sudden Death and Sudden Birth in Semiconductor Microcavities

Abstract: We explore the dynamics of the entanglement in a semiconductor cavity QED containing a quantum well. We show the presence of sudden birth and sudden death for some particular sets of the system parameters.

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Cited by 11 publications
(7 citation statements)
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References 68 publications
(108 reference statements)
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“…Entanglement sudden death has recently been confirmed experimentally [35]. On the other hand, the entanglement can also be created during the evolution or one can observe revival of the entanglement as well as entanglement sudden birth [36][37][38][39].…”
Section: Introductionmentioning
confidence: 92%
“…Entanglement sudden death has recently been confirmed experimentally [35]. On the other hand, the entanglement can also be created during the evolution or one can observe revival of the entanglement as well as entanglement sudden birth [36][37][38][39].…”
Section: Introductionmentioning
confidence: 92%
“…The generalization from the constant coupling g to a coupling that evolves with Energies 2016, 9, 1063 4 of 11 time G(t), will provide new physical phenomena that have not been discussed before. A realization of particular interest, with respect to G(t), may be the time-dependent alignment or orientation of the atomic/molecular dipole moment using a laser pulse [48][49][50][51][52][53] and the motion of the atom through the cavity. For an atom oscillating back and forth across a narrow cavity within a square trap, the coupling is modelled approximately to be sinusoidal G(t) = g sin 2 (t) [48].…”
Section: Model Of the Physical Systemmentioning
confidence: 99%
“…In the case of two-qubit [25,26] mixed state defined in eq. (10), an analytical solution was developed by Wootters in terms of concurrence [27] and the concurrence is given by…”
Section: Concurrence and Negativitymentioning
confidence: 99%