Protecting entanglement from correlated amplitude damping channel using weak measurement and quantum measurement reversal
arXiv:1602.01998 · doi:10.1007/s11128-016-1356-2
Abstract
Based on the quantum technique of weak measurement, we propose a scheme to protect the entanglement from correlated amplitude damping decoherence. In contrast to the results of memoryless amplitude damping channel, we show that the memory effects play a significant role in the suppression of entanglement sudden death and protection of entanglement under severe decoherence. Moreover, we find that the initial entanglement could be drastically amplified by the combination of weak measurement and quantum measurement reversal even under the correlated amplitude damping channel. The underlying mechanism can be attributed to the probabilistic nature of weak measurements.
11 pages, 5 figures, accepted by Quantum Information Processing
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- Effect of Weak Measurement Reversal on Quantum Correlations in a Correlated Amplitude Damping Channel, with a Neural Network Perspective
- Witnessing latent time correlations with a single quantum particle