Schemes to avoid entanglement sudden death of decohering two qubit system
We investigate the entanglement dynamics of two interacting qubits in a common vacuum environment. The inevitable environment interaction leads to entanglement sudden death (ESD) in a two qubit entangled state system. The entanglement dynamics can be modified by the use of local unitary operations (...
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Main Authors | , |
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Format | Journal Article |
Language | English |
Published |
10.10.2018
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Subjects | |
Online Access | Get full text |
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Summary: | We investigate the entanglement dynamics of two interacting qubits in a
common vacuum environment. The inevitable environment interaction leads to
entanglement sudden death (ESD) in a two qubit entangled state system. The
entanglement dynamics can be modified by the use of local unitary operations
(quantum gates), applied on the system during its evolution. We show that these
operations not only delays or avoids the ESD but also advances the entanglement
revival with high concurrence value depending on the time of operation. We have
analytically found out different time windows for switching with different
quantum gates so that the ESD can be completely avoided in the subsequent
evolution of the system. Our result offers practical applications in the field
of quantum information processing where the entanglement is a necessary
resource. |
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DOI: | 10.48550/arxiv.1810.04407 |