Restoration of Quantum State in Dephasing Channel
arXiv:1305.4627 · doi:10.1103/PhysRevA.88.022321
Abstract
In this paper, we propose an explicit scheme to fully recover a multiple-qubit state subject to a phase damping noise. We establish the theoretical framework and the operational procedure to restore an unknown initial quantum state for an N-qubit model interacting with either individual baths or a common bath. We give an explicit construction of the random unitary (RU) Kraus decomposition for an N-qubit model interacting with a common bath. We also demonstrate how to use only one unitary reversal operation to restore an arbitrary state with phase damping noise. In principle, the initial state can always be recovered with a success probability of 1. Interestingly, we found that non-RU decomposition can also be used to restore some particular entangled states. This may open a new path to restore a quantum state beyond the standard RU scheme.
8 pages, 2 figures, Typos and inaccuracies are corrected. Presentation is also improved
References in corpus (13)
- Finite-Time Disentanglement via Spontaneous Emission
- Atomic physics and quantum optics using superconducting circuits
- Quantum Open System Theory: Bipartite Aspects
- Fault-Tolerant Quantum Dynamical Decoupling
- Fisher information under decoherence in Bloch representation
- Undoing a weak quantum measurement of a solid-state qubit
- Inverting quantum decoherence by classical feedback from the environment
- Sudden vanishing and reappearance of nonclassical effects: General occurrence of finite-time decays and periodic vanishings of nonclassicality and entanglement witnesses
- Protecting entanglement in superconducting qubits
- On the minimum number of unitaries needed to describe a random-unitary channel
- Additivity and Distinguishability of Random Unitary Channels
- Quantum information reclaiming after amplitude damping
- Optimized Entanglement-Assisted Quantum Error Correction
Cited by in corpus (12)
- Environment-Assisted Quantum State Restoration Via Weak Measurement
- Fundamental Speed Limits to the Generation of Quantumness
- Noise assisted quantum coherence protection in hierarchical environment
- Parametrization and optimization of Gaussian non-Markovian unravelings for open quantum dynamics
- Controlling the entropic uncertainty lower bound in two-qubit systems under the decoherence
- Enhancement of quantum correlations between two particles under decoherence in finite temperature environment
- Phonon mediated spin relaxation in a moving quantum dot: Doppler shift, Cherenkov radiation, and spin relaxation boom
- Enhanced high-dimensional teleportation in correlated amplitude damping noise by weak measurement and environment-assisted measurement
- Improving the precision of multiparameter estimation in the teleportation of qutrit under amplitude damping noise
- Pre-management of Disentanglement
- Protecting three-dimensional entanglement from correlated amplitude damping channel
- From Independent to Joint: Enhancing Quantum Phase and Correlation Factor Estimation by Squeezed Reservoir Engineering