24,997 research outputs found
Information Flow, Non-Markovianity and Geometric Phases
Geometric phases and information flows of a two-level system coupled to its
environment are calculated and analyzed. The information flow is defined as a
cumulant of changes in trace distance between two quantum states, which is
similar to the measure for non-Markovianity given by Breuer. We obtain an
analytic relation between the geometric phase and the information flow for pure
initial states, and a numerical result for mixed initial states. The geometric
phase behaves differently depending on whether there are information flows back
to the two-level system from its environment.Comment: 12 pages, 11 figure
Suppressing decoherence and improving entanglement by quantum-jump-based feedback control in two-level systems
We study the quantum-jump-based feedback control on the entanglement shared
between two qubits with one of them subject to decoherence, while the other
qubit is under the control. This situation is very relevant to a quantum system
consisting of nuclear and electron spins in solid states. The possibility to
prolong the coherence time of the dissipative qubit is also explored. Numerical
simulations show that the quantum-jump-based feedback control can improve the
entanglement between the qubits and prolong the coherence time for the qubit
subject directly to decoherence
- …
