Coherent-information analysis of quantum channels in simple quantum systems
- 10 August 2000
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review A
- Vol. 62 (3) , 032303
- https://doi.org/10.1103/physreva.62.032303
Abstract
The coherent-information concept is used to analyze a variety of simple quantum systems. Coherent information was calculated for the information decay in a two-level atom in the presence of an external resonant field, for the information exchange between two coupled two-level atoms, and for the information transfer from a two-level atom to another atom and to a photon field. The coherent information is shown to be equal to zero for all full-measurement procedures, but it completely retains its original value for quantum duplication. Transmission of information from one open subsystem to another one in the entire closed system is analyzed to learn quantum information about the forbidden atomic transition via a dipole active transition of the same atom. It is argued that coherent information can be used effectively to quantify the information channels in physical systems where quantum coherence plays an important role.Keywords
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This publication has 21 references indexed in Scilit:
- Information transmission through a noisy quantum channelPhysical Review A, 1998
- Quantum data processing and error correctionPhysical Review A, 1996
- Collisional redistribution of radiation in strong fields: Modification of the collision dynamicsPhysical Review A, 1982
- New method for theoretical calculations of the characteristics of an atom in a strong electromagnetic fieldSoviet Journal of Quantum Electronics, 1979
- Possible lines of research into weak-interaction effects in atomic physicsSoviet Physics Uspekhi, 1976
- Parity non-conservation effects in atomsSoviet Physics Uspekhi, 1976
- Retardation in the resonant interaction of two identical atomsPhysical Review A, 1974
- A Model of LeptonsPhysical Review Letters, 1967
- Damping Theory and the Propagation of RadiationProceedings of the Physical Society. Section A, 1949
- Quantum Theory of RadiationReviews of Modern Physics, 1932