Sudden death of distillability in qutrit-qutrit systems
arXiv:0904.4847 · doi:10.1103/PhysRevA.80.012331
Abstract
We introduce the concept of distillability sudden death, i.e., free entangled states can evolve into non-distillable (bound entangled or separable) states in finite time under local noise. We describe the phenomenon through a specific model of local dephasing noise and compare the behavior of states in terms of the Bures fidelity. Then we propose a few methods to avoid distillability sudden death of states under (general) local dephasing noise, so that free entangled states can be robust against decoherence. Moreover, we find that bound entangled states are unstable in the limit of infinite time.
published version, small changes in Sec.III, 6 pages, 3 figures
References in corpus (29)
- Finite-Time Disentanglement via Spontaneous Emission
- Sudden Death of Entanglement
- Non-Markovian effects on the dynamics of entanglement
- Quantum Open System Theory: Bipartite Aspects
- Dark periods and revivals of entanglement in a two qubit system
- Sudden Birth Versus Sudden Death of Entanglement in Multipartite Systems
- Heralded Entanglement between Atomic Ensembles: Preparation, Decoherence, and Scaling
- Sudden Death of Entanglement of Two Jaynes-Cummings Atoms
- Entanglement dynamics of two independent qubits in environments with and without memory
- Experimental investigation of the dynamics of entanglement: Sudden death, complementarity, and continuous monitoring of the environment
- Scaling laws for the decay of multiqubit entanglement
- Entanglement invariant for the double Jaynes-Cummings model
- A Study on the Sudden Death of Entanglement
- Non-Markovian disentanglement dynamics of two-qubit system
- Evolution equation of entanglement for general bipartite systems
- Entanglement sudden death in qubit-qutrit systems
- Hastening, delaying, or averting sudden death of quantum entanglement
- Manipulating sudden death of entanglement of two-qubit X-states in thermal reservoirs
- The Geometry of Entanglement Sudden Death
- Abrupt Changes in the Dynamics of Quantum Disentanglement
- Local-dephasing-induced entanglement sudden death in two-component finite-dimensional systems
- Disentanglement and decoherence in two-spin and three-spin systems under dephasing
- Distillable entanglement and area laws in spin and harmonic-oscillator systems
- Quantum error correction may delay, but also cause, entanglement sudden death
- Irreversible decay of nonlocal entanglement via a reservoir of a single degree of freedom
- The Decay of Multiqudit Entanglement
- Rank three bipartite entangled states are distillable
- Sudden death, birth and stable entanglement in a two-qubit Heisenberg XY spin chain
- Division of the two-qubit Hilbert space according to the entanglement sudden death under composite noise environment