Physics & Spacearticle2026-08-23

Analytical solution to the Kronig–Penney model with harmonic oscillator wells: insights to tight-binding

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Abstract

The celebrated Kronig–Penney model traditionally has been formulated with square well potentials representing atomic centres. Here, we use a slightly more realistic potential, the truncated harmonic oscillator, in lieu of square well potentials, and solve the model analytically. We derive the energy dispersion and wave functions for this model. This configuration has some important similarities and differences compared to the usual model. In particular, we write the governing equation in a form suggestive of the tight-binding approximation, as can be done for the usual model. In this way, it is straightforward to derive an expression for the tunneling amplitude used in tight-binding in terms of the harmonic oscillator potential parameters.

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View paper (DOI)Open access versionOpenAlexScientific ReportsPublished 2026-08-23

Authors: Christopher Moore, F. Marsiglio

Institutions: University of Alberta