Abstract
The entropy squeezing and variance squeezing for the entangled state of a single two-level atom interacting with a single electromagnetic field mode in a squeezed vacuum with a broad bandwidth are studied. The exact results are employed to perform a careful investigation of the influence of the various parameters of the system on the atomic inversion as well as the entropy squeezing and variance squeezing. It is shown that features of the quantum entropy are influenced significantly by the photon number, the two-photon correlation strength, and the squeezed phase.