English

Information-Entropic Measures in Confined Isotropic Harmonic Oscillator

Statistical Mechanics 2019-04-16 v1 Quantum Physics

Abstract

Information based uncertainty measures like R{\'e}nyi entropy (R), Shannon entropy (S) and Onicescu energy (E) (in both position and momentum space) are employed to understand the influence of radial confinement in isotropic harmonic oscillator. The transformation of Hamiltonian in to a dimensionless form gives an idea of the composite effect of oscillation frequency (ω\omega) and confinement radius (rcr_{c}). For a given quantum state, accurate results are provided by applying respective \emph{exact} analytical wave function in rr space. The pp-space wave functions are produced from Fourier transforms of radial functions. Pilot calculations are done taking order of entropic moments (α,β\alpha, \beta) as (35,3)(\frac{3}{5}, 3) in rr and pp spaces. A detailed, systematic analysis is performed for confined harmonic oscillator (CHO) with respect to state indices nr,ln_{r},l, and rcr_c. It has been found that, CHO acts as a bridge between particle in a spherical box (PISB) and free isotropic harmonic oscillator (IHO). At smaller rcr_c, E\rvecE_{\rvec} increases and R\rvecα,S\rvecR_{\rvec}^{\alpha}, S_{\rvec} decrease with rise of nrn_{r}. At moderate rcr_{c}, there exists an interaction between two competing factors: (i) radial confinement (localization) and (ii) accumulation of radial nodes with growth of nrn_{r} (delocalization). Most of these results are reported here for the first time, revealing many new interesting features.

Keywords

Cite

@article{arxiv.1904.07063,
  title  = {Information-Entropic Measures in Confined Isotropic Harmonic Oscillator},
  author = {Neetik Mukherjee and Amlan K. Roy},
  journal= {arXiv preprint arXiv:1904.07063},
  year   = {2019}
}

Comments

arXiv admin note: text overlap with arXiv:1801.05172