arXiv · quant-ph/0507107
Decoherence in composite quantum open systems: the effectiveness of unstable degrees of freedom
Abstract
The effect induced by an environment on a composite quantum system is studied. The model considers the composite system as comprised by a subsystem A coupled to a subsystem B which is also coupled to an external environment. We study all possible four combinations of subsystems A and B made up with a harmonic oscillator and an upside down oscillator. We analyzed the decoherence suffered by subsystem A due to an effective environment composed by subsystem B and the external reservoir. In all the cases we found that subsystem A decoheres even though it interacts with the environment only through its sole coupling to B. However, the effectiveness of the diffusion depends on the unstable nature of subsystem A and B. Therefore, the role of this degree of freedom in the effective environment is analyzed in detail
Explore related subjects
Keep this discovery
Fernando C. Lombardo, Paula I. Villar. 2006-04-10. Decoherence in composite quantum open systems: the effectiveness of unstable degrees of freedom. https://doi.org/10.1142/s0217979206034959
Cite the original work for its findings. Save a collection to share your selection of sources.