arXiv · 1712.00231
Excitonic physics in a Dirac quantum dot
Abstract
We present a description of vacuum polarization in a circular Dirac quantum dot in two spatial dimensions assuming $α$ - the relative strength of the Coulomb interaction small enough to render an approximation with a single electron (hole) lowest energy level relevant. Applying this approximation, we find that for $ α_c \approx 1.05$ the lowest level is half-filled irrespective of the number of flavors that are present. The ground state can be represented as a superposition of particular (even number) excitonic states which constitute an excitonic cloud that evolves in a crossover manner. The ground state is degenerate with an intervalley excitonic state at $ α_c \approx 1.05$, a critical strength, that in our approximation marks a point with single electron and exciton resonances.
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V. Raca, M. V. Milovanović. 2017-12-01. Excitonic physics in a Dirac quantum dot. https://doi.org/10.1103/physrevb.96.195434
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