| Literature DB >> 33286651 |
Myoung-Jae Lee1,2, Young-Dae Jung3.
Abstract
The influence of shielding on the Shannon information entropy for atomic states in strong coupled plasma is investigated using the perturbation method and the Ritz variational method. The analytic expressions for the Shannon information entropies of the ground (1s) and the first excited states (2p) are derived as functions of the ion-sphere radius including the radial and angular parts. It is shown that the entropy change in the atomic state is found to be more significant in the excite state than in the ground state. It is also found that the influence of the localization on the entropy change is more significant for an ion with a higher charge number. The variation of the 1s and 2p Shannon information entropies are discussed.Entities:
Keywords: Shannon information entropy; strongly coupled plasma
Year: 2020 PMID: 33286651 PMCID: PMC7517485 DOI: 10.3390/e22080881
Source DB: PubMed Journal: Entropy (Basel) ISSN: 1099-4300 Impact factor: 2.524
Figure 1Entropy change is plotted as a function of . The solid line shows the variation for and the dashed line shows the variation for .
Figure 2Entropy change is plotted as a function of . The solid line shows the variation for and the dashed line shows the variation for .
Figure 3Three-dimensional plot of , drawn as a function of and .
Figure 4Three-dimensional plot of , drawn as a function of and .
Figure 5Derivative of with respect to , plotted as a function of . The solid line shows the variation for and the dashed line shows the variation for .
Figure 6Derivative of with respect to , plotted as a function of . The solid line shows the variation for and the dashed line shows the variation for .