English

Information entropy and complexity measure in generalized Kratzer potential

Quantum Physics 2019-04-15 v1

Abstract

Shannon entropy (SS), Fisher information (II) and a measure equivalent to Fisher-Shannon complexity (CIS)(C_{IS}) of a ro-vibrational state of diatomic molecules (O2_2, O2+_2^+, NO, NO+^+) with generalized Kratzer potential is analyzed. \emph{Exact} analytical expression of I\rvecI_{\rvec} is derived for the arbitrary state, whereas the same could be done for I\pvecI_{\pvec} with {n,,m=0}\{n,\ell,m=0\} state. It is found that shifting from neutral to the cationic system, I\rvecI_{\rvec} increases while S\rvecS_{\rvec} decreases, consistent with the interpretation of a localization in the probability distribution. Additionally, this study reveals that CISC_{IS} increases with the number of nodes in a system.

Keywords

Cite

@article{arxiv.1904.06066,
  title  = {Information entropy and complexity measure in generalized Kratzer potential},
  author = {Sangita Majumdar and Neetik Mukherjee and Amlan K. Roy},
  journal= {arXiv preprint arXiv:1904.06066},
  year   = {2019}
}
R2 v1 2026-06-23T08:37:34.470Z