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Journal ArticleDOI

Calculation of the cyclotron resonance line shape in a wigner crystal

Peter Johansson
- 01 Jan 1997 - 
- Vol. 69, pp 73-78
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TLDR
In this paper, the cyclotron resonance absorption spectrum in a Wigner crystal is calculated by considering Coulomb interaction between the excitations at different sites and averaging over different realizations of the spin arrangement within the coherent potential approximation.
Abstract
The cyclotron resonance absorption spectrum in a Wigner crystal is calculated. Due to band-structure effects, the electrons at different sites have different cyclotron resonance frequencies depending on their spin orientation. To calculate the absorption line shape we consider effects of Coulomb (dipole-dipole) interaction between the excitations at different sites. The averaging over different realizations of the spin arrangement is done within the coherent potential approximation. The results show a crossover from a double-peak spectrum at small filling factors where the dipole-dipole interaction is weak, to a single-peak spectrum at filling factors larger than about 1/6 where the interaction effects are completely dominating. As the electron filling factor is increased further, the absorption line becomes broader due to radiation damping. The results are in good agreement with experiments.

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References
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Journal ArticleDOI

Cyclotron Resonance and de Haas-van Alphen Oscillations of an Interacting Electron Gas

TL;DR: In this article, an electron gas with short-range interactions is considered in the presence of a uniform magnetic field and it is shown that the cyclotron resonance frequency is independent of the interaction.
Journal ArticleDOI

Vibrational interaction between molecules adsorbed on a metal surface: The dipole-dipole interaction

TL;DR: In this article, a theory for the properties of vibrational excitations in molecules adsorbed on a metal surface was developed, where the coherent potential approximation (CPA) was used in the treatment of the vibrational interaction between the molecules.
Journal ArticleDOI

Some static and dynamical properties of a two-dimensional Wigner crystal

TL;DR: In this article, the static ground state energy of a two-dimensional Wigner crystal has been obtained for each of the five 2D Bravais lattices, and the dispersion curves for wave vectors along the symmetry directions in the first Brillouin zone for the hexagonal lattice are calculated.
Journal ArticleDOI

Novel magneto-optical behavior in the Wigner-solid regime.

TL;DR: The lack of correlation between v c and the disorder-related properties of the system indicates the intrinsic nature of the line which is proposed signals the formation of a pinned Wigner solid.
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