Protection of telecloning over noisy channels with environment-assisted measurements and weak measurements
From MaRDI portal
Publication:1643503
DOI10.1007/s10773-017-3653-7zbMath1391.81108OpenAlexW2782298302MaRDI QIDQ1643503
Ai-Dong Zhu, Zhao Jin, He-Jin Wu
Publication date: 19 June 2018
Published in: International Journal of Theoretical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10773-017-3653-7
Quantum measurement theory, state operations, state preparations (81P15) Channel models (including quantum) in information and communication theory (94A40) Open systems, reduced dynamics, master equations, decoherence (81S22) Quantum state estimation, approximate cloning (81P50)
Related Items
Protecting unknown qubit states from decoherence of qubit channels by weak measurement, Restoring quantum states from decoherence of finite temperature using environment-assisted measurement, Improving the capacity of quantum dense coding via environment-assisted measurement and quantum measurement reversal, Entanglement protection about four-particle cluster state, Protecting qutrit-qutrit entanglement under the generalized amplitude decoherence of the finite temperature
Cites Work
- Unnamed Item
- Recovering quantum correlations from amplitude damping decoherence by weak measurement reversal
- Environment-assisted entanglement restoration and improvement of the fidelity for quantum teleportation
- On the minimum number of unitaries needed to describe a random-unitary channel
- Protecting entanglement from amplitude damping in non-inertial frames by weak measurement and reversal
- Optimized decoherence suppression of two qubits in independent non-Markovian environments using weak measurement and quantum measurement reversal
- Quantum information reclaiming after amplitude damping
- Protecting Entanglement via the Quantum Zeno Effect
- Error Correcting Codes in Quantum Theory
- Dynamical Decoupling of Open Quantum Systems
- Quantum lost and found
- Spin Echoes
- Shortcuts to adiabatic holonomic quantum computation in decoherence-free subspace with transitionless quantum driving algorithm