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Electron elastic scattering off polarizable $A$@C$_{60}$: The complete study within a particular theory

Atomic Physics 2016-09-27 v1

Abstract

A deeper insight into electron elastic scattering off endohedral fullerenes AA@C60_{60} is provided. The study accounts for polarization of both the encapsulated atom AA and C60_{60} cage by an incident electron. It is carried out in the framework of the combination of both a model and the first-principle approximations. A core principle of the model is that the C60_{60} cage itself is presented by an attractive spherical potential of a certain inner radius, thickness, and depth. The main idea of the first-principle approximation is that the polarization of AA@C60_{60} by an incident electron is accounted with the help of the Dyson equation for the self-energy part of the Green's function of an incident electron. Calculations are performed for, and comparison is made between the individual cases: (a) when AA@C60_{60} is regarded as a static system, (b) when C60_{60} is a static cage, but the encapsulated atom is polarizable, (c) when both C60_{60} and AA are polarized simultaneously but independently of each other, and (d), as the most general scenario, when polarizabilities of C60_{60} and AA are coupled. Spectacular similarities and discrepancies between results of each of the exploited approximations are demonstrated. Revealed features of the overall significant impact of AA@C60_{60} polarization by an incident electron on its elastic scattering off AA@C60_{60} are demonstrated. Choosing Ne, Xe, and Ba as "probing" atoms, the dependence of e+A@C60e + A@{\rm C_{60}} scattering on the size and polarizability of the encapsulated atom is unraveled.

Keywords

Cite

@article{arxiv.1609.07567,
  title  = {Electron elastic scattering off polarizable $A$@C$_{60}$: The complete study within a particular theory},
  author = {V. K. Dolmatov and M. Ya. Amusia and L. V. Chernysheva},
  journal= {arXiv preprint arXiv:1609.07567},
  year   = {2016}
}

Comments

9 pages, 6 figures, submitted to Physical Review A

R2 v1 2026-06-22T15:59:50.863Z