4.5 Article

Statistical Mixture of Kaleidoscope States Interacting with a Two-Level Atom: Entropy and Purification

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PHOTONICS
卷 10, 期 2, 页码 -

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MDPI
DOI: 10.3390/photonics10020150

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Kaleidoscope-states; mixed-states; virtual-atom

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We investigate the interaction between a mixture of coherent states and two-level atoms in the Jaynes-Cummings model. By calculating the von Neumann entropy, we observe oscillations indicating a purification of the initial state due to coherence transfer from the atom to the field. The negative Wigner function suggests the presence of a noisy multiple Schrodinger cat.
We investigate some of the fundamental features of the interaction of a mixture of coherent states, namely, a Kaleidoscope states mixture, with two-level atoms in the Jaynes-Cummings model framework. We begin our analysis by calculating the von Neumann entropy of the field, which is determined with the help of the virtual atom method. The oscillations appearing in the entropy indicate a state of purity greater than the initial state, i.e., a purification of the initial state due to a transfer of coherence from the atom to the field. In this oscillatory region, we obtain a negative Wigner function that hints at a (noisy) multiple Schrodinger cat.

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