Entangled states in high dimensional systems are of great interest due to the extended possibilities they provide in quantum information processing. Recently, Sun et al. [Phys. Rev. A 82, 052323 (2010)] and Kim et al. [Nat. Phys. 8, 117 (2012)] pointed out that weak measurement and quantum weak measurement reversal can actively combat decoherence. We generalize their studies from qubits to qutrits under amplitude damping decoherence. We find that the qutrit-qutrit entanglement can be partially retrieved for certain initial states when only weak measurement reversals are performed. However, we can completely defeat amplitude damping decoherence for any initial st...
Quantum mechanics makes many predictions, such as superposition, projective measurement, and entangl...
5 pages, 3 figuresIn quantum physics, measurement results are random but their statistics can be pre...
We show that for qubits and qutrits it is always possible to perfectly recover quantum coherence by ...
Journals published by the American Physical Society can be found at http://publish.aps.org/Entanglem...
Protection of the quantum coherence and discord in realistic quantum systems interacting with the en...
Weak-reverse measurements (WRM) are employed to recover and protect the entanglement losses of entan...
<p><strong>Figure 4.</strong> Improved scheme to protect the quantum entanglement without the weak m...
Decoherence on two-qubit systems degrades entanglement, and sometimes even causes entanglement sudde...
In this paper, we propose a feed-forward control approach to protect arbitrary two-qubit pure and mi...
One of the crucial tasks in quantum systems is to reduce the effects of decoherence due to the unavo...
Preservation of quantum entanglement in a two-qubit system is achieved by use of the disclosed syste...
Enhancing the quantum correlations in realistic quantum systems interacting with the environment of ...
<p><strong>Figure 5.</strong> The success probability in the recovery step versus the damping probab...
<p><strong>Figure 7.</strong> The experimental scheme for protecting quantum entanglement via Hadama...
<p><strong>Figure 6.</strong> The fidelity between the initial and final state as a function of damp...
Quantum mechanics makes many predictions, such as superposition, projective measurement, and entangl...
5 pages, 3 figuresIn quantum physics, measurement results are random but their statistics can be pre...
We show that for qubits and qutrits it is always possible to perfectly recover quantum coherence by ...
Journals published by the American Physical Society can be found at http://publish.aps.org/Entanglem...
Protection of the quantum coherence and discord in realistic quantum systems interacting with the en...
Weak-reverse measurements (WRM) are employed to recover and protect the entanglement losses of entan...
<p><strong>Figure 4.</strong> Improved scheme to protect the quantum entanglement without the weak m...
Decoherence on two-qubit systems degrades entanglement, and sometimes even causes entanglement sudde...
In this paper, we propose a feed-forward control approach to protect arbitrary two-qubit pure and mi...
One of the crucial tasks in quantum systems is to reduce the effects of decoherence due to the unavo...
Preservation of quantum entanglement in a two-qubit system is achieved by use of the disclosed syste...
Enhancing the quantum correlations in realistic quantum systems interacting with the environment of ...
<p><strong>Figure 5.</strong> The success probability in the recovery step versus the damping probab...
<p><strong>Figure 7.</strong> The experimental scheme for protecting quantum entanglement via Hadama...
<p><strong>Figure 6.</strong> The fidelity between the initial and final state as a function of damp...
Quantum mechanics makes many predictions, such as superposition, projective measurement, and entangl...
5 pages, 3 figuresIn quantum physics, measurement results are random but their statistics can be pre...
We show that for qubits and qutrits it is always possible to perfectly recover quantum coherence by ...